Tubulins in C. elegans.

Daryl D Hurd
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引用次数: 16

Abstract

The C. elegans tubulin family is composed of nine α-, six β-, and one γ-tubulin. Tubulins are highly conserved, functioning as α-β heterodimers that assemble into microtubules. These cylindrical and ubiquitous components of the cytoskeleton are critical for nearly all cellular and developmental processes. C. elegans has provided a model for the study of microtubules in multiple settings including separation of chromosomes, cellular polarity, and neuronal sensation. Tubulins and microtubules interact with a long list of other cellular proteins that regulate tubulin homeostasis, modify microtubule dynamics, and control incorporation into or disassociation of higher-order cellular structures such as spindles or ciliary axonemes. A collection of enzymes modifies tubulins, often at the variable carboxyl-terminal tail, adding another layer of regulation to microtubule structure and function. Genetic and cytological studies in C. elegans have revealed roles for tubulin and its associated proteins in numerous contexts from embryogenesis to adult behavior.

秀丽隐杆线虫中的微管蛋白。
秀丽隐杆线虫微管蛋白家族由9个α-、6个β-和1个γ-微管蛋白组成。微管蛋白是高度保守的,作为α-β异二聚体组装成微管。这些圆柱形和无处不在的细胞骨架成分对几乎所有细胞和发育过程都至关重要。秀丽隐杆线虫为染色体分离、细胞极性和神经元感觉等多种环境下的微管研究提供了模型。微管和微管与一长串其他细胞蛋白相互作用,这些细胞蛋白调节微管稳态,改变微管动力学,并控制纺锤体或纤毛轴突等高阶细胞结构的结合或分离。一组酶修饰微管,通常在可变的羧基末端尾部,为微管的结构和功能增加了另一层调节。秀丽隐杆线虫的遗传学和细胞学研究揭示了微管蛋白及其相关蛋白在从胚胎发生到成虫行为的许多情况下的作用。
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