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katanin调节微管的动力学和运动性纤毛的生物发生。

Katanin regulates dynamics of microtubules and biogenesis of motile cilia.

作者信息

Sharma Neeraj, Bryant Jessica, Wloga Dorota, Donaldson Rachel, Davis Richard C, Jerka-Dziadosz Maria, Gaertig Jacek

机构信息

Department of Cellular Biology, University of Georgia, Athens, GA 30602, USA.

出版信息

J Cell Biol. 2007 Sep 10;178(6):1065-79. doi: 10.1083/jcb.200704021.

Abstract

The in vivo significance of microtubule severing and the mechanisms governing its spatial regulation are not well understood. In Tetrahymena, a cell type with elaborate microtubule arrays, we engineered null mutations in subunits of the microtubule-severing complex, katanin. We show that katanin activity is essential. The net effect of katanin on the polymer mass depends on the microtubule type and location. Although katanin reduces the polymer mass and destabilizes the internal network of microtubules, its activity increases the mass of ciliary microtubules. We also show that katanin reduces the levels of several types of post-translational modifications on tubulin of internal and cortical microtubules. Furthermore, katanin deficiencies phenocopy a mutation of beta-tubulin that prevents deposition of polymodifications (glutamylation and glycylation) on microtubules. We propose that katanin preferentially severs older, post-translationally modified segments of microtubules.

摘要

微管切断的体内意义及其空间调控机制尚未得到充分理解。在具有精细微管阵列的细胞类型草履虫中,我们对微管切断复合物katanin的亚基进行了无效突变设计。我们发现katanin活性至关重要。katanin对聚合物质量的净效应取决于微管类型和位置。尽管katanin会减少聚合物质量并使微管内部网络不稳定,但其活性会增加纤毛微管的质量。我们还表明,katanin会降低内部和皮质微管微管蛋白上几种翻译后修饰的水平。此外,katanin缺陷模拟了β-微管蛋白的一种突变,该突变可防止微管上多修饰(谷氨酰胺化和糖基化)的沉积。我们提出,katanin优先切断微管中较老的、经过翻译后修饰的片段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e4a/2064628/6de96ed9928d/jcb1781065f01.jpg

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