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酪氨酸化和去酪氨酸化微管的差异周转

Differential turnover of tyrosinated and detyrosinated microtubules.

作者信息

Webster D R, Gundersen G G, Bulinski J C, Borisy G G

机构信息

Laboratory of Molecular Biology, University of Wisconsin, Madison, WI 53706.

出版信息

Proc Natl Acad Sci U S A. 1987 Dec;84(24):9040-4. doi: 10.1073/pnas.84.24.9040.

Abstract

Turnover of tyrosinated and detyrosinated microtubules ([Tyr]MTs and [Glu]MTs, respectively) was analyzed by the combined use of hapten-mediated immunocytochemistry and peptide-specific antibodies. Cells were microinjected with hapten-labeled tubulin and then processed for triple-label immunofluorescence to determine the pattern of incorporation of the injected subunits into [Tyr]- and [Glu]-MTs. Within 2 min of microinjection, hapten-labeled domains were present at the ends of virtually all [Tyr]MTs but were absent from most [Glu]MTs, demonstrating that [Tyr]MTs grew, whereas most [Glu]MTs did not. After 1 hr of incubation, all [Tyr]MTs analyzed were copolymers of endogenous and hapten-labeled subunits, indicating complete and rapid turnover of these MTs. However, the majority of [Glu]MTs were not hapten-labeled, indicating that they had not turned over. Even 16 hr after injection, cells that had not divided retained a small proportion of [Glu]MTs lacking hapten, implying that some had persisted for most of a cell generation. At mitosis, all MTs were hapten-labeled, indicating that the stable interphase [Glu]MTs had depolymerized. The results establish that the MT network is heterogeneous in its turnover rate, being composed of at least two populations: [Tyr]MTs that turn over rapidly and [Glu]MTs that turn over slowly.

摘要

通过结合使用半抗原介导的免疫细胞化学和肽特异性抗体,分析了酪氨酸化和去酪氨酸化微管(分别为[Tyr]MTs和[Glu]MTs)的周转情况。将细胞显微注射半抗原标记的微管蛋白,然后进行三重标记免疫荧光处理,以确定注射的亚基掺入[Tyr]-和[Glu]-MTs的模式。在显微注射后2分钟内,几乎所有[Tyr]MTs的末端都存在半抗原标记的结构域,但大多数[Glu]MTs中没有,这表明[Tyr]MTs在生长,而大多数[Glu]MTs没有生长。孵育1小时后,所有分析的[Tyr]MTs都是内源性和半抗原标记亚基的共聚物,表明这些MTs完全且快速周转。然而,大多数[Glu]MTs没有半抗原标记,表明它们没有周转。即使在注射后16小时,未分裂的细胞仍保留一小部分缺乏半抗原的[Glu]MTs,这意味着其中一些在细胞代的大部分时间里都持续存在。在有丝分裂时,所有MTs都有半抗原标记,表明稳定的间期[Glu]MTs已经解聚。结果表明,MT网络在其周转率上是异质的,由至少两个群体组成:快速周转的[Tyr]MTs和缓慢周转的[Glu]MTs。

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