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Systematic characterization of the zinc-finger-containing proteins in the mouse transcriptome

机译:小鼠转录组中含锌指蛋白的系统表征

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摘要

Zinc-finger-containing proteins can be classified into evolutionary and functionally divergent protein families that share one or more domains in which a zinc ion is tetrahedrally coordinated by cysteines and histidines. The zinc finger domain defines one of the largest protein superfamilies in mammalian genomes; 46 different conserved zinc finger domains are listed in InterPro (http://www.ebi.ac.uk/InterPro). Zinc finger proteins can bind to DNA, RNA, other proteins, or lipids as a modular domain in combination with other conserved structures. Owing to this combinatorial diversity, different members of zinc finger superfamilies contribute to many distinct cellular processes, including transcriptional regulation, mRNA stability and processing, and protein turnover. Accordingly, mutations of zinc finger genes lead to aberrations in a broad spectrum of biological processes such as development, differentiation, apoptosis, and immunological responses. This study provides the first comprehensive classification of zinc finger proteins in a mammalian transcriptome. Specific detailed analysis of the SP/Kruppel-like factors and the E3 ubiquitin-ligase RING-H2 families illustrates the importance of such an analysis for a more comprehensive functional classification of large protein families. We describe the characterization of a new family of C2H2 zinc-finger-containing proteins and a new conserved domain characteristic of this family, the identification and characterization of Sp8, a new member of the Sp family of transcriptional regulators, and the identification of five new RING-H2 proteins.
机译:含锌指的蛋白质可分为进化和功能不同的蛋白质家族,它们共享一个或多个域,其中锌离子由半胱氨酸和组氨酸四面体配位。锌指结构域定义了哺乳动物基因组中最大的蛋白质超家族之一。 InterPro(http://www.ebi.ac.uk/InterPro)中列出了46个不同的保守锌指结构域。锌指蛋白可以结合其他保守结构,作为模块结构域与DNA,RNA,其他蛋白质或脂质结合。由于这种组合多样性,锌指超家族的不同成员有助于许多不同的细胞过程,包括转录调控,mRNA稳定性和加工以及蛋白质更新。因此,锌指基因的突变导致广泛的生物学过程中的畸变,例如发育,分化,凋亡和免疫应答。这项研究提供了哺乳动物转录组中锌指蛋白的首次全面分类。对SP / Kruppel样因子和E3泛素连接酶RING-H2家族的具体详细分析说明了这种分析对于大蛋白家族更全面的功能分类的重要性。我们描述了一个新家族的C2H2含锌指蛋白的表征和该家族的一个新的保守结构域特征,Sp8的鉴定和表征,Sp家族的转录调节子的一个新成员以及五个新的鉴定RING-H2蛋白。

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