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细胞形态发生过程中微管翻译后修饰的稳定作用。

Stabilization of post-translational modification of microtubules during cellular morphogenesis.

作者信息

Bulinski J C, Gundersen G G

机构信息

Department of Anatomy and Cell Biology, Columbia University, College of Physicians and Surgeons, New York, New York 10032.

出版信息

Bioessays. 1991 Jun;13(6):285-93. doi: 10.1002/bies.950130605.

Abstract

This review discusses the possible role of alpha-tubulin detyrosination, a reversible post-translational modification that occurs at the protein's C-terminus, in cellular morphogenesis. Higher eukaryotic cells possess a cyclic post-translational mechanism by which dynamic microtubules are differentiated from their more stable counterparts; a tubulin-specific carboxypeptidase detyrosinates tubulin protomers within microtubules, while the reverse reaction, tyrosination, is performed on the soluble protomer by a second tubulin-specific enzyme, tubulin tyrosine ligase. In general, the turnover of microtubules in undifferentiated, proliferating cells is so rapid that the microtubules accumulate very little detyrosinated tubulin; that is, they are enriched in tyrosinated tubulin. However, an early event common to at least three well-studied morphogenetic events--myogenesis, neuritogenesis, and directed cell motility--is the elaboration of a polarized array of stable microtubules that become enriched in detyrosinated tubulin. The formation of this specialized array of microtubules in specific locations in cells undergoing morphogenesis suggests that it plays an important role in generating cellular asymmetries.

摘要

本综述探讨了α-微管蛋白去酪氨酸化(一种发生在蛋白质C末端的可逆翻译后修饰)在细胞形态发生中的可能作用。高等真核细胞拥有一种周期性翻译后机制,通过该机制动态微管与其更稳定的对应物得以区分;一种微管蛋白特异性羧肽酶使微管内的微管蛋白原去酪氨酸化,而相反的反应,即酪氨酸化,则由另一种微管蛋白特异性酶微管蛋白酪氨酸连接酶对可溶性原进行。一般来说,未分化的增殖细胞中微管的周转非常迅速,以至于微管积累的去酪氨酸化微管蛋白很少;也就是说,它们富含酪氨酸化微管蛋白。然而,至少在三个经过充分研究的形态发生事件(肌发生、神经突发生和定向细胞运动)中共同出现的一个早期事件是形成极化的稳定微管阵列,这些微管在去酪氨酸化微管蛋白中富集。在经历形态发生的细胞的特定位置形成这种特殊的微管阵列表明,它在产生细胞不对称性方面起着重要作用。

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