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1.
The object of this work was to measure the effective proton conductance of the plasma membrane ofMicrococcus denitrificans under various conditions and to investigate possible connections between respiration and proton translocation.
  1. Pulsed acid-base titrations of suspensions ofM. denitrificans in a medium containing the permeant thiocyanate ion, or when K+ ion permeability was induced by valinomycin in a KCl medium, showed that the normal effective proton conductance of the membrane system was less than 1 μmho/cm2.
  2. A pH-overshoot artefact was suppressed by adding carbonic anhydrase.
  3. The effective proton conductance was increased by the uncoupler FCCP in the same concentration range as was required to stimulate respiration. Concentrations of FCCP above 1·5 μM inhibited respiration after an initial stimulation.
  4. The effective proton conductance in presence of 2 μM FCCP was at least 17 μmho/cm2.
  5. The quantitative relationships between the respiratory rate, the stoichiometry of respiration-driven proton translocation, and the effective proton conductance of the membrane of the cells are compatible with the suggestion that stimulation of respiration by FCCP is due to a release of back-pressure exerted by a protonmotive potential on the respiratory chain system in the membrane. Only one amongst other possible explanations of the stimulation of respiration by FCCP is, however, excluded.
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2.
  1. The respiratory chain energy conservation systems of Bacillus megaterium strains D440 and M have been investigated following growth in batch and continuous culture. Respiratory membranes from these strains contained cytochromes b, aa 3 , o and b, c, a, o, respectively; both readily oxidised NADH but neither showed any pyridine nucleotide transhydrogenase activity.
  2. Whole cells of both strains exhibited endogenous →H-/O ratios of approximately 4; when loaded with specific substrates the resultant →H+/O ratios indicated that proton translocating loops 1 and 2 were present in strain D440 and that loops 2 and 3 were present in strain M.
  3. In situ respiratory activities were measured as a function of dilution rate during growth in continuous culture. True molar growth yields with respect to oxygen (Y O 2) of approximately 50 g cells·mole oxygen-1 were obtained for most of the nutrient limitations employed. Average values for Y ATP of 12.7 and 10.8 g cells·mole ATP equivalents-1 were subsequently calculated for strains D440 and M respectively.
  4. Energy requirements for maintenance purposes were low in energy-limited cultures but were substantially increased when growth was limited by nitrogen source (NH 4 + ). Under the latter conditions there is probably a partial uncoupling of energy-conserving and energy-utilising processes leading to energy wastage.
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3.
  1. Proteus mirabilis formed fumarate reductase under anaerobic growth conditions. The formation of this reductase was repressed under conditions of growth during which electron transport to oxygen or to nitrate is possible. In two of three tested chlorateresistant mutant strains of the wild type, fumarate reductase appeared to be affected.
  2. Cytoplasmic membrane suspensions isolated from anaerobically grownP. mirabilis oxidized formate and NADH with oxygen and with fumarate, too.
  3. Spectral investigation of the cytoplasmic membrane preparation revealed the presence of (probably at least two types of) cytochromeb, cytochromea 1 and cytochromed. Cytochromeb was reduced by NADH as well as by formate to approximately 80%.
  4. 2-n-Heptyl-4-hydroxyquinoline-N-oxide and antimycin A inhibited oxidation of both formate and NADH by oxygen and fumarate. Both inhibitors increased the level of the formate/oxygen steady state and the formate/fumarate steady state.
  5. The site of inhibition of the respiratory activity by both HQNO and antimycin A was located at the oxidation side of cytochromeb.
  6. The effect of ultraviolet-irradiation of cytoplasmic membrane suspensions on oxidation/reduction phenomena suggested that the role of menaquinone is more exclusive in the formate/fumarate pathway than in the electron transport route to oxygen.
  7. Finally, the conclusion has been drawn that the preferential route for electron transport from formate and from NADH to fumarate (and to oxygen) includes cytochromeb as a directly involved carrier. A hypothetical scheme for the electron transport in anaerobically grownP. mirabilis is presented.
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4.
  1. Electron transport particles obtained from cellfree extracts of Propionibacterium shermanii by centrifugation at 105000xg for 3 hrs oxidized NADH, d,l-lactate, l-glycerol-3-phosphate and succinate with oxygen and, except for succinate, with fumarate, too.
  2. Spectral investigation of the electron transport particles revealed the presence of cytochromes b, d and o, and traces of cytochrome a 1 and a c-type cytochrome. Cytochrome b was reduced by succinate to about 50%, and by NADH, lactate or glycerol-3-phosphate to 80–90.
  3. The inhibitory effects of amytal and rotenone on NADH oxidation, but not on the oxidation of the other substrates, indicated the presence of the NADH dehydrogenase complex, or “site I region”, in the electron transport system of P. shermanii.
  4. NQNO inhibited substrate oxidations by oxygen and fumarate, as well as equilibration of the flavoproteins of the substrate dehydrogenases by way of menaquinone. The inhibition occurred at low concentrations of the inhibitor, and reached 80–100%, depending on the substrate tested. The site of inhibition of the respiratory activity was located between menaquinone and cytochrome b. In addition, inhibition of flavoprotein equilibration suggested that NQNO acted upon the electron transfer directed from menaquinol towards the acceptor to be reduced, either cytochrome b or the flavoproteins, which would include fumarate reductase.
  5. In NQNO-inhibited particles, cytochrome b was not oxidized by oxygen-free fumarate, but readily oxidized by oxygen. It was concluded from this and the above evidence that the branching-point of the electron transport chain towards fumarate reductase was located at the menaquinone in P. shermanii. It was further concluded that all cytochromes were situated in the oxygen-linked branch of the chain, which formed a dead end of the system under anaerobic conditions.
  6. Antimycin A inhibited only oxygen-linked reactions of the particles to about 50% at high concentrations of the inhibitor. Inhibitors of terminal oxidases were inactive, except for carbon monoxide.
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5.
  1. Out of 20 exogeneous substrates only ethanol and, to a much lesser extent, lactate and pyruvate were shown to be capable of stimulating the respiration of Acholeplasma laidlawii cells. However, none of these substrates changed the initial rate of active transport of 3-O-methyl-d-glucose (3-O-MG).
  2. From inhibitory analyses and spectroscopic data, it is apparent that the respiratory chain of A. laidlawii has no cytochromes and is probably not responsible for oxidative phosphorylation.
  3. Valinomycin and nigericin stimulated cell respiration only in the presence of K+-ions, while monensin stimulated it in the presence of Na+-ions.
  4. 3-O-MG transport was shown to be sensitive to uncouplers, ATPase inhibitors and arsenate are resistant to a majority of respiratory inhibitors tested. This suggested that there was no relationship between respiration and carbohydrate transport in the A. laidlawii cells. Further evidence was provided by the absence of respiratory stimulation during the transport of non-metabolizing carbohydrates.
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6.
The present study demonstrates that the mitochondrial respiratory chain includes not three but four energy coupling sites, the fourth site being localized at the NADPH→NAD+ step.
  1. The NADPH→NAD+-directed transhydrogenase reaction in sonicated beef heart submitochondrial particles energizes the particle membrane as judged by two membrane potential probes, i.e. uptake of a penetrating anion, phenyldicarbaundecaborane (PCB?), and enhancement of anilinonaphthalene sulfonate (ANS?) fluorescence.
  2. The reverse reaction (NADH→NADP+) is accompanied by the oppositely directed anion movement, i.e. PCB? efflux.
  3. Being insensitive to rotenone, antimycin, cyanide, and oligomycin, both the influx and efflux of PCB? coupled with transhydrogenase reaction can be prevented or reversed by uncouplers.
  4. Equalization of concentrations of the transhydrogenase substrates and products also prevents (or reverses) the PCB? influx coupled with oxidation of NADPH by NAD+, as well as the PCB? efflux coupled with reduction of NADP+ by NADH.
  5. The transhydrogenase-linked PCB? uptake depends linearly on the energy yield of the oxidation reaction calculated according to formula $$\Delta G = RTln\frac{{[NADPH] x [NAD^ + ]}}{{[NADP^ + ] x [NADH]^ \cdot }}$$ No threshold value of Δ was found. Measurable PCB? transport was still observed at Δ≤0.5 kcal/mole NADPH oxidized.
  6. Partial uncoupling of transhydrogenase reaction and PCB? transport, induced by low concentrations ofp-trifluoromethoxycarbonylcyanide phenylhydrazone (FCCP), dinitrophenol, or by removing coupling factor F1, results in the decrease of the slope of the straight line showing the PCB? uptake as a function of Δ. Oligomycin improves the coupling in F1-deprived particles, the slope being increased. Rutamycin, dicyclohexylcarbodiimide (DCCD) and reconstitution of particles with F1, also increase the coupling.
  7. In phosphorylating particles oxidizing succinate by O2, both the energy-dependent NADH→NADP+ hydrogen transfer and PCB? influx possess equal sensitivity to FCCP, which is lower than the sensitivity of oxidative phosphorylation. Similarly, the decrease in the succinate oxidation rate induced by malonate arrests first phosphorylation and then under higher malonate concentration, PCB? influx. The rate of NADPH→NAD+ transhydrogenase reaction was found to be lower than the threshold value of rate of succinate oxidation, still coupled with phosphorylation. Respectively, the values of PCB? uptake under transhydrogenase reaction are lower than those inherent in phosphorylating oxidation of succinate.
The conclusion is made that the NADPH→NAD+-directed transhydrogenase reaction generates the membrane potential of the same polarity as respiration and ATP hydrolysis but of a lower magnitude (“plus” inside particles; the forward hydrogen transfer). The NADH→NADP+-directed transhydrogenase reaction forms the membrane potential of the opposite polarity (“minus” inside particles; the reverse hydrogen transfer). Under conditions used, the transhydrogenase-produced membrane potential proves to be too low to support ATP synthesis (and, most probably, the synthesis of any other high-energy compound) maintaining, nevertheless, some electrophoretic ion fluxes. A conclusion is made that transhydrogenase forms a membrane potential with no high-energy intermediates involved.  相似文献   

7.
The polarity and stoichiometry of respiration-driven proton translocation was studied by electrometric and spectrophotometric techniques inMicrococcus denitrificans in the context of the energy transduction mechanism in bacterial oxidative phosphorylation.
  1. Protons are ejected through the plasma membrane during respiratory pulses and thereafter diffuse slowly back.
  2. In presence of ionic species mobile across the membrane (K+-valinomycin, K+-gramicidin, or SCN?), limiting→H+/O quotients of 8 were obtained with endogenous respiratory substrates, and the rate of translocation (14·3 μg ions of H+/sec g cell dry weight) was commensurate with that of respiration optimally stimulated by FCCP at an →H+/O quotient of 8.
  3. The rate of decay of the proton pulses was greatly increased by FCCP, but there was little or no effect on the →H+/O quotient characteristic of the respiratory system.
  4. Various interpretations of the observations are discussed, and it is concluded that respiration is probably coupled directly or indirectly to electrogenic proton translocation. The observations are compatible with the chemiosmotic hypothesis of coupling between respiration and phosphorylation.
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8.
In the absence of direct evidence concerning the nature of the early Earth environments, it is acceptable under the uniformitarian principle to attempt to define primitive habitats from modern procaryotic physiology. Combining the rock and fossil record with present phylogenetic reconstuctions, application of this paleoecological approach to the evolutionary biochemistry and physiology of nitrogen fixation and photosynthesis leads to several inferences about the nature of Archean environments:
  1. To stimulate nitrogenase evolution and avoid its repression, the activity of the NH 4 + ion was less than 10?3, and probably lower.
  2. To be consistent with a moderately protective ozone screen, while not also repressing nitrogenase activity, incursions of abiotic dissolved oxygen at levels in the range 10?1.2?10?3.5 PAL would have been acceptable.
  3. To induce the formation and activity of RuBP carboxylase, the pCO2 was less than 100 PAL.
  4. To support Photosystem I activity, sulfide concentrations of at least 10?4 M were present in the photic zone.
  5. To avoid a too-rapid oxidation of sulfide, the pH was probably between 6–7, where H2S exceeds HS?.
Evolutionary ‘pressure’ to stimulate the later development of oxygenic photosynthesis (Photosystem II), would require several subsequent habitat modifications:
  1. Lowering the sulfide to < 10?4 M to inhibit Photosystem I.
  2. Raising the pH above neutral (HS? > H2S), to mediate more rapid oxidation of HS?.
  3. Maintaining either an illumination below 300–400 lux (to avoid photosynthetic O2 self-repression of nitrogen fixation), or an adequate local source of combined nitrogen (aNH 4 + > 10?4) to repress nitrogen fixation entirely.
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9.
T. Kamaya 《Mycopathologia》1969,37(4):320-330
Young colonies of Sabouraud's glucose agar room temperature culture ofCandida species from human isolation were suspended in distilled water. The suspension was mixed with a solution of lysozyme and incubated in a 37° C water bath. Within 3–5 hours, various species ofCandida cells showed flocculation to varying degrees which occurred at varying periods of onset. Among sevenCandida species,Candida albicans andCandida stellatoidea showed the strongest flocculation, earliest onset and most solution clarity than did any other species.Candida stellatoidea was indistinguishable fromCandida albicans in its degree of flocculation, and in the clarity of solution.Candida species may be arranged in the following order according to their decreasing positivity in flocculation:
  1. Candida albicans
  2. Candida stellatoidea
  3. Candida tropicalis
  4. Candida krusei
  5. Candida pseudotropicalis
  6. Candida parapsilosis
  7. Candida guilliermondii
  8. Saccharomyces species may be placed afterCandida guilliermondii.
It seems possible to separate theCandida species into 3 groups by the rate of flocculation, and clarity of solution. Group I.Candida albicans andCandida stellatoidea. Group II.Candida tropicalis, C. krusei andCandida pseudotropicalis. Group III.Candida parapsilosis andCandida guilliermondii. Saccharomyces specimens (S. cerevisiae and others) were placed after group III.  相似文献   

10.
  1. The lipid composition of mitochondria isolated from a fatty acid desaturase mutant ofSaccharomyces cerevisiae may be extensively manipulated by growing the organism on defined supplements of unsaturated fatty acid (UFA).
  2. The fatty acid composition of the mitochondrial lipids closely follows that of the whole cells from which the mitochondria are isolated. UFA-depleted mitochondria contain normal levels of sterols, neutral lipids and total phospholipids, but have much lower levels of phosphatidyl inositides.
  3. UFA-depleted mitochondria possess a full complement of cytochromes, oxidase both NAD-linked and flavoprotein-linked substrates at normal rates, and have levels of succinate and malate dehydrogenases similar to those of UFA-supplemented mitochondria. However, UFA-depletion has a marked effect on the ability of cytochromec to reactivate the NADH oxidase activity of cytochromec-depleted mitochondria.
  4. The efficiency of oxidative phosphorylation decreases progressively with the UFA content of the mitochondria, and oxidative phosphorylation is completely lost in mitochondria containing approximately 20% UFA.
  5. The incorporation of UFA into the lipids of UFA-depleted mitochondriain vivo results in a recoupling of oxidative phosphorylation. Recoupling is insensitive to both chloramphenicol and cycloheximide, indicating that all the proteins necessary for oxidative phosphorylation are present in UFA-depleted mitochondria, and that the less of oxidative phosphorylation is a purely lipid lesion.
  6. ATPase activity is apparently unaffected by UFA-depletion, but32Pi-ATP exchange activity is lost in mitochondria which have been extensively depleted in UFA.
  7. Valinomycin stimulates the respiration of UFA-supplemented mitochondria in media containing potassium, but has no effect on the respiration of UFA-depleted mitochondria, suggesting that active transport of potassium is lost as a result of UFA-depletion.
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11.
  1. During an investigation of the physiology of Azotobacter vinelandii with particular reference to polysaccharide formation, a suitable medium which was precipitate-free was developed by adding EDTA at a concentration of 50 mg/l to a basal medium containing one of eight different carbohydrates as sole carbon source.
  2. Acetylated alginate was always produced by the organism when cultured under defined conditions, regardless of the carbohydrate source incorporated in the basal medium.
  3. When EDTA was added to the medium, the bacteria produced acetylated polyuronides with a preponderance of mannuronic acid residues.
  4. A comparison of the infrared spectra of the alginate produced by Azotobacter vinelandii and the affect of EDTA upon the mannuronic acid/guluronic acid ratios of the alginate are reported.
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12.
  1. Growth requirements of blue-green algae containing only the c-phycocyanin + chlorophyll a pigment system have been studied under blue light (380–540 nm) which approximates light conditions existing in subsurface waters in nature.
  2. While a few species were capable of very slow photosynthetic growth on minimal medium with NO3 - as nitrogen source, most species were dependent on organic compounds for comparable growth under this condition. Some organisms did quite well with only Casamino Acids as a supplement, others did well with only glucose. One species, Agmenellum quadruplicatum strain PR-6, grew only when glucose and Casamino Acids were supplied simultaneously.
  3. Inhibitory effects of blue light on CO2 fixation and nitrogen metabolism are noted as possible explanations of these responses.
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13.
  1. A fully automated phototaxis monitoring device is described for measuring photo-topatactic responses of flagellated organisms.
  2. Photokinesis can be demonstrated in Chlamydomonas cells only after a dark period of about 72 hrs.
  3. Pre-darkening of a few hours duration raises the phototactic disposition, whereas pre-illumination has no significant effect.
  4. Circadian rhythms can be initiated by only one period of darkness or lower light intensity, whereas a period of higher intensity does not induce rhythms. The period length of the circadian rhythms is about 24 hrs.
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14.
  1. Acute administration of ethanol (4 g/kg, i.p.) to mice inhibits the sequestration of calcium into endoplasmic reticulum-like organelles in synaptosomal membranes.
  2. Ethanol administration inhibits both Ca2+-stimulated adenosine triphosphate hydrolysis and ATP-dependent calcium uptake in the vesicles at time of loss of righting reflex.
  3. At recovery of righting reflex, the Ca2+-ATPase activity returns to normal levels, while the ATP-dependent uptake remains inhibited.
  4. The effect of ethanol is specific for the sequestration (active transport) of calcium since calcium binding to synaptic membranes is not altered.
  5. Alteration in mechanisms responsible for synaptosomal buffering of cytosolic Ca2+ levels by in vivo ethanol may contribute to altered transmitter release rates following ethanol adminstration.
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15.
The author investigated the carotenoids in the Echinodermata from Adriatic sea by means of columnar and thin-layer chromatography. The following carotenoids were identified:
  • - in Coscinasterias tenuispina: β-carotene, isocryptoxanthin lutein, lutein-5, 6-epoxide, 4-hydroxy-4-keto-β-carotene, zeaxanthin, astaxanthin and asterinacid.
  • - in Marthasterias glacialis: β-carotene, echinenone, cryptoxanthin, lutein, lutein 5, 6-epoxide, 4-hydroxy-4-keto-β-carotene, zeaxanthin, astaxanthin ester, astaxanthin and 3, 4-didehydro-α-carotene.
  • - in Paracentrotus lividus: β-carotene, echinenone, cryptothin, isocryptoxanthin, lutein, lutein-5, 6-epoxide, 4-hydroxy-4-keto-β-carotene, zeaxanthin, astaxanthin, astaxanthin ester and asterinacid.
  • - in Sphaerechinus granularis: ,β-carotene, echinenone, cryptoxanthin, lutein, lutein-5, 6-epoxide, astaxanthin and guaraxanthin.
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    16.
    1. Intracellular recording were obtained from P-cells of the LGN of the cat. The impulse trains of a single presynaptic retinal ganglion cell and the postsynaptic P-cell were separated by band-pass-filtering and subsequent amplitude discrimination.
    2. The rates of information and transinformation for the visual channel from the eye to a ganglion cell and to the connected P-cell were calculated. Input signals to the channel were trains of light flashes of different rate, luminance and spatial distribution.
    3. Transinformation was calculated without restrictive assumptions for the code.
    4. The transient behaviour of the system in response to a flash was fully considered for information calculations. Additionally, it was ensured that the state of the (adaptive) channel was considered correctly.
    5. Information theory was applied in an extended way. The time courses of information transfer were calculated for various flash stimuli and compared with each other.
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    17.
    1. The inhibitory effects of CPTA, nicotine, DPA, and San 6706 on carotenogenesis in Myxococcus fulvus were investigated.
    2. The effects of CPTA, D-nicotine, and L-nicotine were very similar. The action of the drugs wasadditive. The cyclization was inhibited at low doses, the introduction of the hydroxyl group at C-1′ at higher doses. Lycopene accumulated at high drug concentration. The mode of action of the inhibitors is discussed.
    3. In a carotenoid mutant of M. fulvus a stimulation of the “7,8-dehydrogenase” by CPTA was observed.
    4. The specific carotenoid content of bacteria was increased by DPA due to an enhanced formation of phytoene. At low doses of DPA small amounts of an intermediate carotenoid glucoside ester, a 7,8-dihydro derivative, were detected.
    5. DPA was taken up by the plasma membrane. Quantitative removal of DPA by washing was not possible.
    6. San 6706 specifically and reversibly blocked the desaturation of phytoene.
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    18.
    1. Protease and amylase activity in the digestive system ofBarbus paludinosus Peters (Pisces, Cyprinidae) has been investigated.
    2. Chromatographic analysis showed seven amino acids to be present in both the anterior and posterior intestine. Only leucine, phenylalanine, valine, glycine and aspartic acid were positively identified.
    3. In the anterior intestine chromatography revealed two sugars, but only one in the posterior intestine which was identified as glucose.
    4. The pH of the intestinal fluid was found to be 5.8 and 7.8 for the fore and hind gut respectively, This correlates well with the enzyme pH optima found in in vitro experiments.
    5. Protease and amylase activity was found throughout the digestive tract. Maximum proteolytic activity being present in the anterior intestine. Amylase activity is similar in both regions of the gut.
    6. Correlation between the digestive enzymes and the fishes diet is briefly discussed.
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    19.
    • 1.1. Phoronis architecta hemoglobin is composed of four distinct hemoglobin subunits with minimum MW's of 16–17,000 or 17–19,000 daltons. All four hemoglobins are monomeric when oxygenated. Two of the monomers combine to form dimers when bound with carbon monoxide.
    • 2.2. In cellulo, Phoronis architecta hemoglobin has a half-saturation (P50) value of 1.3 ± 0.1 mm Hg, shows cooperative oxygen binding (Hill coefficient = 2.7 ± 0.3), and no Bohr effect from pH 6.6 to 7.9. In vitro, the hemoglobin has a P50 of 0.76 ± 0.21 mm Hg but shows no cooperativity (0.90 ± 0.15 (SD)).
    • 3.3. The oxygen dissociation constant (Koff) from hemoglobin is 2.7 ± 0.2 sec−1, and the computed oxygen association constant (Kon) is 2.5 × 106 M−1 · sec−1 (1.9–3.6 × 106 M−1 · sec−1).
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    20.
    1. The oligomycin-sensitivity conferring protein (OSCP) has been further investigated and by modifying the purification procedure, the protein has been obtained free of minor contaminants. The single protein has the properties of both an energy-transfer factor and an oligomycin-sensitivity conferring factor when assayed with suitable depleted submitochondrial particles.
    2. Several physical and chemical properties of OSCP have been examined. The protein has an isoelectric point of around 9·3 and is not inhibited by sulfhydryl reagents such as iodoacetate, iodoacetamide or parachloromeruriphenyl sulphonate, or by high concentrations of iodine.
    3. Knowledge of those and other physical properties of OSCP allows comparison of OSCP with several other previously described coupling factors.
      相似文献   

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