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培养神经元中细胞骨架蛋白合成与组装之间的间隔时间。

Interval between the synthesis and assembly of cytoskeletal proteins in cultured neurons.

作者信息

Black M M, Keyser P, Sobel E

出版信息

J Neurosci. 1986 Apr;6(4):1004-12. doi: 10.1523/JNEUROSCI.06-04-01004.1986.

Abstract

We have used pulse-chase experiments to study the time interval between the synthesis and assembly of tubulin and neurofilament proteins (NFP) in sympathetic neurons grown in tissue culture. After varying pulse-chase times, cultures were extracted with Triton X-100 such that polymerized tubulin and NFP were insoluble, while unassembled tubulin and NFP were quantitatively solubilized. The partitioning of labeled tubulin and NFP between Triton X-100-soluble and insoluble, or cytoskeletal, fractions was determined with an isoelectric focusing X SDS gel electrophoresis assay. Labeled tubulin and NFP in cultures pulse-labeled for 5-10 min partitions primarily with the soluble fraction. When pulse-labeled cultures were chased for increasing periods of time, relatively more of the total labeled tubulin and NFP partitioned with the cytoskeleton, attaining maximal values after chase times of 60-120 and 15-30 min, respectively. The maximal values for the relative levels of labeled tubulin and NFP in polymer were 70-75 and greater than 90%, respectively. The levels of labeled tubulin and NFP synthesized during a short pulse-label remained constant for at least 2 hr, indicating that selective turnover of soluble tubulin and NFP does not detectably contribute to the changes in solubility properties of these proteins observed in the pulse-chase experiments. These results indicate that newly synthesized tubulin and NFP are rapidly assembled from soluble precursors. The lag between the synthesis and assembly of the 145,000-molecular-weight NFP is not related to its phosphorylation because its initial incorporation into the cytoskeleton occurs prior to its phosphorylation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们利用脉冲追踪实验研究了在组织培养中生长的交感神经元微管蛋白和神经丝蛋白(NFP)合成与组装之间的时间间隔。在不同的脉冲追踪时间后,用Triton X - 100提取培养物,使得聚合的微管蛋白和NFP不溶,而未组装的微管蛋白和NFP被定量溶解。用等电聚焦X SDS凝胶电泳测定法确定标记的微管蛋白和NFP在Triton X - 100可溶和不溶或细胞骨架部分之间的分配。在脉冲标记5 - 10分钟的培养物中,标记的微管蛋白和NFP主要分配在可溶部分。当对脉冲标记的培养物进行越来越长时间的追踪时,相对更多的总标记微管蛋白和NFP分配到细胞骨架中,分别在追踪60 - 120分钟和15 - 30分钟后达到最大值。聚合物中标记的微管蛋白和NFP相对水平的最大值分别为70 - 75%和大于90%。在短脉冲标记期间合成的标记微管蛋白和NFP水平至少在2小时内保持恒定,这表明可溶性微管蛋白和NFP的选择性周转对在脉冲追踪实验中观察到的这些蛋白质溶解性变化没有明显贡献。这些结果表明,新合成的微管蛋白和NFP从可溶性前体迅速组装而成。145,000分子量的NFP在合成和组装之间的延迟与其磷酸化无关,因为它最初掺入细胞骨架发生在其磷酸化之前。(摘要截短于250字)

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