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951.
952.
Through the work of U. J. Lewis and E. V. Cheever (1967, Endocrinoloyg81, 1338–1348) and U. J. Lewis, E. V. Cheever, and B. K. Seavey (1968, J. Biol. Chem.243, 260–267) it has been known for a number of years that human growth hormone (hGH), and many other proteins, reacts with unsaturated fatty acids to give rise to species with enhanced electrophoretic mobility. In view of the possible importance of this reaction in the genesis of charge isomeric protein artifacts, and for the understanding of hGH as a system of multiple isomers with distinct, and in some cases enhanced, specific activities, the nature of this reaction was investigated further. It was found that (1) the positions of oleic acid and growth hormone on polyacrylamide gel electrophoresis (PAGE) are coincident, indicating that the reaction leads to binding of the fatty acid to the protein: (2) the increment in molecular net charge on growth hormone is proportional to the molar ratio between the reactants, oleic acid and hGH; (3) the binding is noncovalent since it reverses under conditions of isoelectric focusing; (4) the reaction product has a molecular size indistinguishable from that of the reactant, hGH, by the criteria of “quantitative” PAGE (however, the reaction product exhibits an elevated negative molecular net charge in PAGE at pH 10.2); (5) the apparent isoelectric points of the hormone and its reaction products with oleic acid are indistinguishable in isoelectric focusing; (6) the interaction does not seem to involve the carboxyl charges on oleic acid since it is independent of ionic strength; (7) a noncovalent hydrophobic interaction with the protein is indicated since the range of electrophoretic mobilities exhibited by the hGH-oleic acid complex is smaller in the presence of benzyl alcohol in the gel than that exhibited by controls in it absence; (8) the reaction does not seem to involve free radical derivatives of the unsaturated fatty acid since it is not altered when the polyacrylamide gel is in a nonoxidative state; (9) the effect of the reaction with oleic acid on the tryptophan spectrum reflects only nonspecific interaction of the hormone-concomitant tryptophan perturbation.  相似文献   
953.
954.
Cell nuclei have been released from various plant tissues (barley leaves, roots and embryos, tobacco leaves and tissue cultures,Vicia faba roots,Arabidopsis thaliana leaves) by several homogenization methods and the optimal method was established for each tissue. The effect of the composition of isolation medium on the yield and appearance of isolated nuclei was also studied. Longer incubation withn-octanol increases the yield considerably in most cases. Low concentrations of osmoticum increase the yield and their adverse effect on the integrity of nuclei is of little significance. Gum arabic has a favourable effect on nuclei isolation from roots only.  相似文献   
955.
956.
957.
A method for enzyme immunoassay of thyroid-stimulating hormone (TSH) is described, TSH was conjugated with horseradish peroxidase according to periodate oxidation method. Separation of the bound and free was obtained by double-antibody solid-phase technique using Sepharose 4B-anti-rabbit immunogiobulin G (IgG)-geat IgG. The fluorescence reaction using tyramine and hydrogen peroxide as substrates was used for the determination of enzyme activity in order to increase the sensitivity of enzyme immunoassay. The standard curve for serum TSH was satisfactory to recognize TSH concentrations as 0.06 μU/tube. TSH values obtained by this method correlated well with those obtained by radioimmunoassay (r, 0.96). The coefficients of variation were 1.8 to 5.3% (within assay) and 5.1 to 10.5% (between assay). The method is about equal to radioimmunoassay with respect to sensitivity. Since it requires minimal equipment and is less expensive than radioimmunoassay, it is possible to perform routine assays even in laboratories with limited facilities.  相似文献   
958.

Background  

Spidroins are a unique family of large, structural proteins that make up the bulk of spider silk fibers. Due to the highly variable nature of their repetitive sequences, spidroin evolutionary relationships have principally been determined from their non-repetitive carboxy (C)-terminal domains, though they offer limited character data. The few known spidroin amino (N)-terminal domains have been difficult to obtain, but potentially contain critical phylogenetic information for reconstructing the diversification of spider silks. Here we used silk gland expression data (ESTs) from highly divergent species to evaluate the functional significance and phylogenetic utility of spidroin N-terminal domains.  相似文献   
959.
Inhibitory pathways are an essential component in the function of the neocortical microcircuitry. Despite the relatively small fraction of inhibitory neurons in the neocortex, these neurons are strongly activated due to their high connectivity rate and the intricate manner in which they interconnect with pyramidal cells (PCs). One prominent pathway is the frequency-dependent disynaptic inhibition (FDDI) formed between layer 5 PCs and mediated by Martinotti cells (MCs). Here, we show that simultaneous short bursts in four PCs are sufficient to exert FDDI in all neighboring PCs within the dimensions of a cortical column. This powerful inhibition is mediated by few interneurons, leading to strongly correlated membrane fluctuations and synchronous spiking between PCs simultaneously receiving FDDI. Somatic integration of such inhibition is independent and electrically isolated from monosynaptic excitation formed between the same PCs. FDDI is strongly shaped by I(h) in PC dendrites, which determines the effective integration time window for inhibitory and excitatory inputs. We propose a key disynaptic mechanism by which brief bursts generated by a few PCs can synchronize the activity in the pyramidal network.  相似文献   
960.
  1. Realized trophic niches of predators are often characterized along a one‐dimensional range in predator–prey body mass ratios. This prey range is constrained by an “energy limit” and a “subdue limit” toward small and large prey, respectively. Besides these body mass ratios, maximum speed is an additional key component in most predator–prey interactions.
  2. Here, we extend the concept of a one‐dimensional prey range to a two‐dimensional prey space by incorporating a hump‐shaped speed‐body mass relation. This new “speed limit” additionally constrains trophic niches of predators toward fast prey.
  3. To test this concept of two‐dimensional prey spaces for different hunting strategies (pursuit, group, and ambush predation), we synthesized data on 63 terrestrial mammalian predator–prey interactions, their body masses, and maximum speeds.
  4. We found that pursuit predators hunt smaller and slower prey, whereas group hunters focus on larger but mostly slower prey and ambushers are more flexible. Group hunters and ambushers have evolved different strategies to occupy a similar trophic niche that avoids competition with pursuit predators. Moreover, our concept suggests energetic optima of these hunting strategies along a body mass axis and thereby provides mechanistic explanations for why there are no small group hunters (referred to as “micro‐lions”) or mega‐carnivores (referred to as “mega‐cheetahs”).
  5. Our results demonstrate that advancing the concept of prey ranges to prey spaces by adding the new dimension of speed will foster a new and mechanistic understanding of predator trophic niches and improve our predictions of predator–prey interactions, food web structure, and ecosystem functions.
  相似文献   
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