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纤毛虫斯特里利亚史氏虫中赖氨酸 63 多聚泛素化的多重用途。

Multiple uses of Lys63-polyubiquitination in the ciliate Sterkiella histriomuscorum.

机构信息

Laboratoire de Biologie Cellulaire 4, UMR (CNRS) 8080, Université Paris-Sud, XI, Bâtiment 444, 91405 Orsay Cedex, France.

出版信息

Protist. 2010 Jul;161(3):479-88. doi: 10.1016/j.protis.2010.01.004. Epub 2010 Feb 21.

Abstract

Poly-ubiquitination through Lys63, a post-translational modification system, is emerging as a mechanism implicated in a variety of non-proteolytic functions in eukaryotic cells. This modification is mainly carried out via a unique complex formed between a canonical ubiquitin-conjugating enzyme (E2), Ubc13, and an E2-variant, Uev. To date, a wealth of functional information has been obtained mostly from animals and yeast. Here, we show that the ciliate Sterkiella histriomuscorum harbors a Ubc13 gene that encodes a putative protein exhibiting 60-64% identity with Ubc13 from organisms of diverse eukaryotic phyla. A yeast double-hybrid assay and 3D-structure modelling gave evidence that ShUbc13 is able to physically interact with ShUev; the existence of such a complex in a ciliate attests for its ancient origin. Western blotting reveals that Ubc13 is present in different stages of the vegetative cycle of S. histriomuscorum. Immunolocalization of Ubc13 and K63 polyubiquitinated proteins shows three main locations, namely the nucleus, cilia and plasma membrane. Possible functions of ShUbc13 and K63 polyubiquitination in this single-celled organism are considered with reference to current knowledge. In particular their likely involvement in DNA replication and DNA damage response is especially discussed.

摘要

多聚泛素化通过赖氨酸 63 位,一种翻译后修饰系统,正在成为真核细胞中多种非蛋白水解功能的机制。这种修饰主要通过一种独特的复合物来完成,该复合物由一种规范的泛素连接酶(E2)、Ubc13 和一种 E2 变体、Uev 组成。迄今为止,大量的功能信息主要来自动物和酵母。在这里,我们表明纤毛虫 Sterkiella histriomuscorum 含有一个 Ubc13 基因,该基因编码一种假定的蛋白质,与来自不同真核生物门的生物体中的 Ubc13 具有 60-64%的同一性。酵母双杂交测定和 3D 结构建模证明了 ShUbc13 能够与 ShUev 进行物理相互作用;纤毛虫中存在这样的复合物证明了它的古老起源。Western blotting 显示 Ubc13 存在于 S. histriomuscorum 营养周期的不同阶段。Ubc13 和 K63 多泛素化蛋白的免疫定位显示出三个主要位置,即细胞核、纤毛和质膜。考虑到目前的知识,对这种单细胞生物中 ShUbc13 和 K63 多泛素化的可能功能进行了考虑。特别是它们可能参与 DNA 复制和 DNA 损伤反应的情况特别进行了讨论。

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