【2h】

The 14-3-3s

机译:14-3-3

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摘要

Multiple members of the 14-3-3 protein family have been found in all eukaryotes so far investigated, yet they are apparently absent from prokaryotes. The major native forms of 14-3-3s are homo- and hetero-dimers, the biological functions of which are to interact physically with specific client proteins and thereby effect a change in the client. As a result, 14-3-3s are involved in a vast array of processes such as the response to stress, cell-cycle control, and apoptosis, serving as adapters, activators, and repressors. There are currently 133 full-length sequences available in GenBank for this highly conserved protein family. A phylogenetic tree based on the conserved middle core region of the protein sequences shows that, in plants, the 14-3-3 family can be divided into two clearly defined groups. The core region encodes an amphipathic groove that binds the multitude of client proteins that have conserved 14-3-3-recognition sequences. The amino and carboxyl termini of 14-3-3 proteins are much more divergent than the core region and may interact with isoform-specific client proteins and/or confer specialized subcellular and tissue localization.
机译:到目前为止,在所有真核生物中都发现了14-3-3蛋白家族的多个成员,但原核生物显然不存在这些成员。 14-3-3的主要天然形式是同型和异型二聚体,其生物学功能是与特定的客户蛋白质发生物理相互作用,从而影响客户的变化。结果,14-3-3参与了许多过程,例如对应激的响应,细胞周期控制和细胞凋亡,它们充当了衔接子,活化剂和阻遏物。 GenBank中目前有133个全长序列供此高度保守的蛋白质家族使用。基于蛋白质序列保守的中间核心区域的系统树表明,在植物中,14-3-3家族可以分为两个明确定义的组。核心区域编码两亲性凹槽,该两性凹槽结合具有保守的14-3-3-识别序列的多种客户蛋白。 14-3-3蛋白的氨基和羧基末端比核心区域差异更大,并且可能与同工型特异性客体蛋白相互作用和/或赋予专门的亚细胞和组织定位。

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