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微管稳定蛋白STOP的克隆、表达及特性

Cloning, expression, and properties of the microtubule-stabilizing protein STOP.

作者信息

Bosc C, Cronk J D, Pirollet F, Watterson D M, Haiech J, Job D, Margolis R L

机构信息

Laboratoire du Cytosquelette, Institut Nationale de la Santé et de la Recherche Médicale, Grenoble, France.

出版信息

Proc Natl Acad Sci U S A. 1996 Mar 5;93(5):2125-30. doi: 10.1073/pnas.93.5.2125.

Abstract

Nerve cells contain abundant subpopulations of cold-stable microtubules. We have previously isolated a calmodulin-regulated brain protein, STOP (stable tubule-only polypeptide), which reconstitutes microtubule cold stability when added to cold-labile microtubules in vitro. We have now cloned cDNA encoding STOP. We find that STOP is a 100.5-kDa protein with no homology to known proteins. The primary structure of STOP includes two distinct domains of repeated motifs. The central region of STOP contains 5 tandem repeats of 46 amino acids, 4 with 98% homology to the consensus sequence. The STOP C terminus contains 28 imperfect repeats of an 11-amino acid motif. STOP also contains a putative SH3-binding motif close to its N terminus. In vitro translated STOP binds to both microtubules and Ca2+-calmodulin. When STOP cDNA is expressed in cells that lack cold-stable microtubules, STOP associates with microtubules at 37 degrees C, and stabilizes microtubule networks, inducing cold stability, nocodazole resistance, and tubulin detyrosination on microtubules in transfected cells. We conclude that STOP must play an important role in the generation of microtubule cold stability and in the control of microtubule dynamics in brain.

摘要

神经细胞含有丰富的冷稳定微管亚群。我们之前分离出一种钙调蛋白调节的脑蛋白,即STOP(仅稳定微管多肽),当将其添加到体外冷不稳定微管中时,它能重建微管的冷稳定性。我们现已克隆出编码STOP的cDNA。我们发现STOP是一种100.5 kDa的蛋白质,与已知蛋白质无同源性。STOP的一级结构包括两个不同的重复基序结构域。STOP的中央区域包含5个46个氨基酸的串联重复序列,其中4个与共有序列有98%的同源性。STOP的C末端包含28个11个氨基酸基序的不完全重复序列。STOP在其N末端附近还包含一个假定的SH3结合基序。体外翻译的STOP能与微管和Ca2+-钙调蛋白结合。当STOP cDNA在缺乏冷稳定微管的细胞中表达时,STOP在37℃时与微管结合,并稳定微管网络,诱导冷稳定性、诺考达唑抗性以及转染细胞中微管上的微管蛋白去酪氨酸化。我们得出结论,STOP必定在脑内微管冷稳定性的产生以及微管动力学的控制中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bb1/39921/7b3cc64f8468/pnas01509-0403-a.jpg

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