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1.
Flow of protein and ribonucleic acid in peripheral nerve   总被引:2,自引:2,他引:0  
Radioactively labelled leucine and orotic acid were injected into the ventral horn of the lumbar region of the spinal cord. The outflow of labelled products into the sciatic nerve was studied. Leucine is rapidly incorporated into protein and to a lesser extent into lipid. The labelled protein is transported down the nerve, apparently by axoplasmic flow. This labelled protein was present in all sub-cellular fractions of nerve although the soluble fraction had the highest specific activity. Orotic acid is converted to a number of nucleotide derivatives and RNA. Both the nucleotides and RNA move down the sciatic nerve, but the pattern of movement is diffuse whereas protein appears to move as a discrete band. The results suggest that two systems may be operating, one in which part of the RNA is transported by axoplasmic flow along the nerve and the other involving a synthesis of RNA in the nerve from precursors which flow down the nerve. This labelled RNA was membrane bound and on sedimentation analysis, proved to be predominantly of ribosomal type.  相似文献   

2.
In the 5-day-old chick, radioactive leucine was incorporated into proteins of synaptosomal and subsynaptosomal fractions both by fast axoplasmic flow and synthesis within the optic tectum. The distribution of radioactivity in subsynaptosomal fractions suggested that both pathways contribute to the protein constituents of each fraction. The relative contributions to each fraction were similar except for the supernatant proteins, for which fast axoplasmic flow contributed less than the synthesis within the optic tectum. The qualitative contribution of fast flow and synthesis within the optic tectum to the synaptic membrane fraction was distinctive. Fast axoplasmic flow preferentially labelled the high molecular weight proteins, whereas synthesis within the optic tectum labelled a larger percentage of smaller molecular weight proteins.  相似文献   

3.
—The effect of drugs which have been shown to alter monoamines in the CNS on the rate of fast axoplasmic flow of [3H]leucine labelled material in the rat sciatic nerve was examined. Drugs which deplete monoamines led to a decrease while those which increase the level of monoamines led to an increase in the rate of fast axoplasmic flow. Monoaminergic drugs were also found to alter the amount of [3H]leucine incorporated into spinal cord.  相似文献   

4.
Colchicine blocks axoplasmic flow and produces neurofibrillary degeneration. Brain slices from mice injected intracerebrally with colchicine incorporated more [14C]leucine into protein and had a decreased uptake of [14C]leucine into the perchloric acid-soluble pool than did their controls. Brain RNA content was decreased and free leucine increased by colchicine-induced encephalopathy. The specific activities of proteins from subcellular fractions of colchicine-injected brain were increased in the nuclear fraction, the 100,000-g supernatant, and its vinblastine-precipitable tubulin. The ratio of the specific activity of the crude mitochondrial fraction to that of the total homogenate was decreased, as would consistent with impaired movement of newly labeled protein into synaptosomes. Colchicine-injected brain extracts contained one or more cytosol fractions that stimulated ribosomal incorporation of [14C]leucine into protein in a cell-free system. Colchicine-binding-activity measurements indicated loss of soluble and particulate tubulin in colchicine-injected brains; the decrease of soluble tubulin was verified by its selective precipitation with vinblastine. Colchicine encephalopathy did not affect the rate of spontaneous breakdown of in vitro colchicine binding activity. Similarities of colchicine encephalopathy to the neuron's response to axonal damage suggest that colchicine-induced increase in protein synthesis may, in part, reflect a neuronal response to blockage of neuroplasmic transport.  相似文献   

5.
DEPENDENCE OF FAST AXOPLASMIC TRANSPORT IN NERVE ON OXIDATIVE METABOLISM   总被引:8,自引:3,他引:5  
—A crest of labelled activity moving down the sciatic nerve at 401 ± 35 mm/day after injection of the L7 dorsal root ganglion of the cat with L-[3H]leucine characterizes fast axoplasmic transport of materials and has been studied with regard to its dependence on oxidative metabolism. Transport of labelled materials in vitro occurred if the nerve was supplied with O2 or 95 % O2+ 5 % CO2. Transport was not dependent upon continuity of the fibres with the ganglionic soma. Asphyxiation (N2) rapidly blocked fast transport in vitro. Likewise NaCN or dinitrophenol in an O2 atmosphere both effectively block fast transport within 15 min. Tetrodotoxin and procaine, agents which block excitation of the membrane, had no effect on fast transport. The inference is that oxidative metabolism supplies the energy required by the molecular mechanism underlying fast axoplasmic transport.  相似文献   

6.
The axonal transport of labelled proteins was studied in the optic system of adult rabbits after an intraocular injection of [3H]Ieucine. It was demonstrated that the precursor was incorporated into protein, which was transported along the axons of the retinal ganglion cells. Intraocularly injected puromycin inhibited protein synthesis in the retina and markedly inhibited the appearance of labelled protein in the optic nerve and tract. It was further demonstrated by intracisternal injection of [3H]leucine that an intraocular injection of puromycin did not affect the local protein synthesis in the optic nerve and tract. Cell fractionation studies of the optic nerve and tract showed that the rapidly migrating component, previously described as moving at an average rate of 110-150 mm/day, was largely associated with the microsomal fraction. About 40 per cent of the total protein-bound radioactivity in this component was found in the microsomal fraction and about 15 per cent was recovered in the soluble protein fraction. Most of the labelled material moving at a rate of 1-5-2 mm/day was soluble protein. The specific radioactivity of this component was about ten times greater than that of the fast one. In the slow component about 50 per cent of the radioactivity was found in the soluble protein fraction and about 10 per cent of the radioactivity was recovered in the microsomal fraction. Radioautography demonstrated incorporated label in the neuropil structures in the lateral geniculate body as early as 4-8 hr after intraocular injection. The labelling of the neuropil increased markedly during the first week, and could be observed after 3 weeks.  相似文献   

7.
Summary Non-histone proteins of normal, non-immunized rats and rats immunized with mouse spleen cells were labelled with three different amino acids: [3H]tryptophan, [3H]methionine and [3H]leucine. Chromatin was fractionated at increasing salt concentrations into three fractions: 0.35 M NaCl-soluble, 2 M NaCl-soluble and residual. Non-histone protein fractions F (Mr 12 000) and H (Mr 3 000) highly labelled with [3H]tryptophan, lower with [3H]methionine but not with [3H]leucine, were present mainly in the residual fraction. After DNAse II treatment non-histone protein fractions F and H disappeared in chromatin fractions and were present in Mg2– soluble fractions which suggests that, similar to the fractions I (Mr below 3 000) and B (Mr 120 000) described previously (5), these fractions may be associated with active transcribed genes.  相似文献   

8.
Colchicine blocks axoplasmic flow and produces neurofibrillary degeneration. Brain slices from mice injected intracerebrally with colchicine incorporated more [14C]leucine into protein and had a decreased uptake of [14C]leucine into the perchloric acid-soluble pool than did their controls. Brain RNA content was decreased and free leucine increased by colchicine-induced encephalopathy. The specific activities of proteins from subcellular fractions of colchicine-injected brain were increased in the nuclear fraction, the 100,000-g supernatant, and its vinblastine-precipitable tubulin. The ratio of the specific activity of the crude mitochondrial fraction to that of the total homogenate was decreased, as would be consistent with impaired movement of newly labeled protein into synaptosomes. Colchicine-injected brain extracts contained one or more cytosol fractions that stimulated ribosomal incorporation of [14C]leucine into protein in a cell-free system. Colchicine-binding-activity measurements indicated loss of soluble and particulate tubulin in colchicine-injected brains; the decrease of soluble tubulin was verified by its selective precipitation with vinblastine. Colchicine encephalopathy did not affect the rate of spontaneous breakdown of in vitro colchicine binding activity. Similarities of colchicine encephalopathy to the neuron's response to axonal damage suggest that colchicine-induced increase in protein synthesis may, in part, reflect a neuronal response to blockage of neuroplasmic transport.  相似文献   

9.
A comparison of potato and vertebrate lactate dehydrogenases.   总被引:3,自引:0,他引:3       下载免费PDF全文
The incorporation of labelled leucine was measured in protein fractions of muscle in intact control and dystrophic female hamsters and also in cell-free preparations obtained from these animals. The labelling of the soluble sarcoplasmic protein fraction, the microsomal protein fraction and the sarcolemma protein fraction was increased in the dystrophic hindleg muscle. The specific radioactivities of the sarcolemma protein fraction and other fractions were increased markedly relative to that of free leucine in the dystrophic muscle. In cell-free preparations where ribonuclease effects were avoided, the dystrophic muscle exhibited an increased synthesis of peptide bonds.  相似文献   

10.
Abstract— An analysis of proteins undergoing axonal transport in nigro-striatal neurons, after the stereotaxic injection of [3H]leucine into the substantia nigra of rat brain was performed. As early as 6 h after the injection [3H]proteins appeared in the caudate-putamen. The maximum accumulation was at 5 days and there was still residual protein radioactivity present at 30 days. About 70 per cent of the total radioactive protein in the caudate-putamen was solubilized by homogenization in 0–5%, (v/v) Triton X-100 and remained in the supernatant on centrifuging for 1 h at 100,000 g. The supernatant fraction, when chroma-tographed on a DEAE-cellulose column, was resolved into four protein peaks (A, B. C and D) which were found to be labelled differently as a function of time after the injection of [3H]leucine. Peak A was substantially labelled in a first phase (6–24 h) and reached its maximum in a second phase (5 days). The proteins comprising this peak appeared to undergo both fast and slow axonal transport. Although some labelling in peak B was evident at 6 h, maximal activity did not occur until 5 days. No radioactivity could be detected in peaks C and D at 6 h. Maximal labelling of these two peaks also occurred at 5 days. These data suggest that the proteins of peaks B, C and D were transported primarily by slow axoplasmic flow. The radioactive protein peaks A and B from the second phase of the transport were excluded from a Sephadex G-200 column, pointing to their high molecular weights (13,000–200,000). Peak B. which had the highest specific radioactivity (c.p.m./mg protein) at 5 days, contained a significant level of tyrosine hydroxylase, an important component of dopaminergic neurons.  相似文献   

11.
Mice were injected intracerebrally with [14C]glucosamine, and incorporation into macromolecules in various subcellular fractions of brain was studied at a number of times after administration of the precursor. The [14C]glucosamine was rapidly incorporated into macromolecules of all the subcellular fractions of brain including both the soluble and particulate fractions of isolated nerve endings. Incorporation into macromolecules in the soluble fraction of nerve endings was quite extensive 3 hr after administration of the precursor and the specific acitvity of this fraction fell thereafter. In contrast there was only slight incorporation of [14C] leucine into the soluble protein from isolated nerve endings in the first few hours after administration, whereas the other subcellular fractions were maximally labelled at that time. The data suggests that, unlike protein which is largely transported to nerve endings in the axoplasm, there is extensive incorporation of carbohydrate into macromolecules in nerve endings. Whereas the protein component of a glycoprotein or mucopolysaccharide may be transported to the nerve ending from the perikaryon, the structure and function of this protein may be modified at the nerve ending by further incorporation of glucosamine, sialic acid and possibly other carbohydrates. The carbohydrate-containing macromolecules could influence nerve ending function immediately after these final synthetic reactions since these reactions occur at the nerve ending and not in the perikaryon.  相似文献   

12.
Measurement of protein turnover in rat brain   总被引:6,自引:3,他引:3  
Abstract— Degredation rates of rat brain proteins were measured by following the decay in specific radioactivity of carboxyl labelled aspartate and glutamate over a 17-day period. Initial labelling of these amino acids was achieved by a single intraperitoneal injection 0f NaH14CO3. The non-linear decay curve for total brain proteins could be approximated by assuming that the mixture contained two classes of proteins with half-lives of 3.3 and 8.7 days, respectively. Half-lives of 2.5 and 7.7 days were estimated for such protein classes in the microsomal fraction. The half-lives of soluble proteins, synaptic membranes, cell body and synaptic mitochondria were 3.1, 5.8, 5.6 and 8.4 days, respectively. Identical results were obtained if the change in specific activity of intact protein labeled by NaH14CO3 was followed. Two-fold slower decay rates were obtained when brain proteins were labeled with a pulse of [4,5-3H]leucine or [l-14C]leucine. Half-lives calculated for the two classes of proteins in whole brain were 8.4 and 16.5 days, respectively with [4,5-3H]leucine and 8.9 and 14.2 days, respectively with [1-14C]leucine. These results indicate the very significant reutilization of this amino acid in brain. Sodium [14C]bicarbonate is a more satisfactory isotopic precursor for accurate assessment of rates of protein turnover in brain.  相似文献   

13.
The constituent proteins of the fast (110–150 mm/day) and slow (1.5–2 mm/day) components of axonal transport in the retinal ganglion cells of the rabbit were investigated. The fast and slow components were labelled by intraocular injection of (3H)- and (14C)-leucine, respectively. Subcellular fractionation of the optic nerve and tract and subsequent gel electrophoresis of the fractions showed that most of the soluble proteins moved with the slow phase of axonal transport, whereas only some of the soluble proteins were transported with the rapid phase. Extraction of the microsomal fraction with triton X-100 resulted in the solubilization of highly labelled proteins belonging to the rapid phase. These proteins showed a relatively low electrophoretic mobility.  相似文献   

14.
The pattern of activity found in ventral roots removed at different times after seventh lumbar and first sacral cord injections of [3H]leucine gave evidence for fast and slow phases of axoplasmic flow. An intra-axonic location was shown for the fast flow by the block of downflow produced by freezing a narrow region of the ventral root, by reduction of downflow on preinjection of puromycin into the cord and by radioautography of ventral roots. Separate mechanisms appear to be required to account for the fast and slow phases of axoplasmic flow.  相似文献   

15.
Incorporation of leucine and changes in different protein fractions have been studied during Sorghum grain development. Most of the label from the injected leucine-[14C] was found in glutelin and residue fraction towards later stages of maturity. The label in albumin, globulin and prolamin decreased with a concomitant increase in label in glutelin and residue proteins. The concentration of lysine, aspartic acid and glycine decreased while that of leucine, proline, alanine, tyrosine, phenylalanine, and cystine increased during grain development. Increase in serine, methionine, valine and isoleucine was only marginal. The proportion of glutamic acid was high at all stages of grain development. Glutelin fraction resolved into two peaks on gel chromatography, only one of which with higher MW was labelled, while in albumin both the peaks were found to be labelled. Tannin content also increased during grain development.  相似文献   

16.
The stability of rapidly labelled hybridizable messenger RNA in both exponential and post-exponential phase cells of Bacillus amyloliquefaciens was measured in terms of the rate of loss of its radioactivity. In the exponential phase, where 96% of the mRNA was specific for cell proteins and only 4% was exoprotein mRNA, the label was lost exponentially from the rapidly labelled hybridizable mRNA fraction with a half-life of six minutes at 30 °C. The antibiotic rifampicin, at a concentration of 10 μg/ml, had no effect on the characteristics of decay of this exponential-phase mRNA. In the post-exponential phase, where there were equal amounts of cell protein and exoprotein-specific mRNA, rapidly labelled hybridizable mRNA decayed exponentially in the presence of rifampicin (10 μg/ml), with a half-life of six minutes at 30 °C. In the absence of rifampicin the characteristics of decay were more complex. The evidence available suggested that this was due to the superimposition of a component attributable to reincorporation of degradation products of radioactive RNA on the characteristic exponential decay pattern of the post-exponential mRNA.Measurement of the stability of active mRNA, by studying the loss of ability to incorporate l-[14C]leucine into protein in the presence of rifampicin (10 μg/ml), gave half-lives of 4.5 minutes and six minutes, respectively, for exponential and post-exponential material.  相似文献   

17.
Both chicken spinal cord and the posterior chamber of the rat eye have been injected with either [3H]leucine or [3H]orotic acid. The movement of newly synthesized protein and RNA down the sciatic and optic nerves was followed by means of autoradiography. Protein moved down both nerves by axoplasmic flow, the protein being confined to intra-axonal spaces. RNA appeared to move at about the same rate as protein, but much of the newly formed RNA appeared in structures outside the axons, particularly in Schwann and glial cells. There was, however a considerable proportion of the RNA inside the axons. This RNA may be involved in the direction of protein synthesis at sites along the axonal processes.  相似文献   

18.
The proteins of wild-type and polyploid plasmodia of P. polycephalum were prelabelled with [3H]leucine and [14C]leucine. The two types of plasmodia were then fused for 2 h. Following fusion the nuclei were isolated and the smaller wild-type cell nuclei separated from the larger polyploid cell nuclei. The proteins were isolated from the recipient cell nuclei and the recipient nuclear proteins extracted. Ratios of 3H/14C in the various nuclear protein fractions show that during fusion differential transfer of labelled preformed proteins from the donor cell into the recipient cell nucleus occurs. The quantity of proteins transferred varies among the different fractions and with the phase of the cell cycle. Isotopic dilution experiments indicate that these differences in protein transfer are, in part, due to a high rate of synthesis and turnover of the nuclear proteins.  相似文献   

19.
Summary The uptake of various 14C labelled compounds like (1-14C) glucose, (1-14C) acetate, (2-14C) uracil, (1-14C) leucine and (14C–CH3) methionine was studied in Aspergillus parasiticus. A comparative study of asparagine deficient, zinc deficient and SLS cultures revealed different growth patterns. High lipid levels under zinc and asparagine deficiency were observed. During the stationary phase the synthesis of proteins and DNA declined. The uptake of 14C labelled glucose, methionine and acetate was maximum in asparagine deficient cultures during the transitional and stationary phase of growth. Maximum uptake of labelled methionine and glucose occured during the exponential growth phase (45 h). The uptake of labelled leucine was highest under asparagine deficiency during the exponential and transitional phases but reached a minimum during stationary phase. The uptake of labelled uracil remained high throughout in the asparagine deficient cultures. The mechanism of inhibition of aflatoxin biosynthesis in the absence of zinc and asparagine seems to be different.  相似文献   

20.
Synthesis of Proteins by Isolated Euglena gracilis Chloroplasts   总被引:3,自引:2,他引:1       下载免费PDF全文
Intact Euglena gracilis chloroplasts, which had been purified on gradients of silica sol, incorporated [35S]methionine or [3H]leucine into soluble and membrane-bound products, using light as the only source of energy. The chloroplasts were osmotically shocked, fractionated on discontinuous gradients of sucrose, and the products of protein synthesis of the different fractions characterized by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The soluble fraction resolved into three zones of radioactivity, the major one corresponding to the large subunit or ribulose diphosphate carboxylase. The thylakoid membrane fraction contained nine labeled polypeptides, the two most prominent in the region of 31 and 42 kilodaltons. The envelope fraction contained a major radioactive peak of about 48 kilodaltons and four other minor peaks. The patterns of protein synthesis by isolated Euglena chloroplasts are broadly similar to those observed with chloroplasts of spinach and pea.  相似文献   

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