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真核生物 Cys2His2 锌指结构从原核细菌 ros 同源物进化的实验测试情景。

An experimentally tested scenario for the structural evolution of eukaryotic Cys2His2 zinc fingers from eubacterial ros homologs.

机构信息

Dipartimento di Scienze Ambientali, Biologiche e Farmaceutiche, Seconda Università di Napoli , Via Vivaldi 43, 81100 Caserta, Italy.

出版信息

Mol Biol Evol. 2013 Jul;30(7):1504-13. doi: 10.1093/molbev/mst068. Epub 2013 Apr 9.

DOI:10.1093/molbev/mst068
PMID:23576569
Abstract

The exact evolutionary origin of the zinc finger (ZF) domain is unknown, as it is still not clear from which organisms it was first derived. However, the unique features of the ZF domains have made it very easy for evolution to tinker with them in a number of different manners, including their combination, variation of their number by unequal crossing-over or tandem duplication and tuning of their affinity for specific DNA sequence motifs through point substitutions. Classical Cys2His2 ZF domains as structurally autonomous motifs arranged in multiple copies are known only in eukaryotes. Nonetheless, a single prokaryotic Cys2His2 ZF domain has been identified in the transcriptional regulator Ros from Agrobacterium tumefaciens and recently characterized. The present work focuses on the evolution of the classical ZF domains with the goal of trying to determine whether eukaryotic ZFs have evolved from the prokaryotic Ros-like proteins. Our results, based on computational and experimental data, indicate that a single insertion of three amino acids in the short loop that separates the β-sheet from the α-helix of the Ros protein is sufficient to induce a structural transition from a Ros like to an eukaryotic-ZF like structure. This observation provides evidence for a structurally plausible and parsimonious scenario of fold evolution, giving a structural basis to the hypothesis of a horizontal gene transfer (HGT) from bacteria to eukaryotes.

摘要

锌指(ZF)结构域的确切进化起源尚不清楚,因为它最初是从哪个生物中衍生出来的还不清楚。然而,ZF 结构域的独特特征使得进化很容易以多种不同的方式对其进行修改,包括它们的组合、通过不等交换或串联重复的数量变化,以及通过点取代来调整它们与特定 DNA 序列基序的亲和力。经典的 Cys2His2ZF 结构域作为结构自主的基序,以多个拷贝的形式排列,仅在真核生物中已知。尽管如此,在根瘤农杆菌的转录调节因子 Ros 中已经鉴定出一个单一的原核 Cys2His2ZF 结构域,并对其进行了最近的特征描述。本工作重点研究经典 ZF 结构域的进化,目的是试图确定真核 ZF 是否是从原核 Ros 样蛋白进化而来的。我们的基于计算和实验数据的结果表明,在 Ros 蛋白的β-折叠与α-螺旋之间的短环中插入三个氨基酸足以诱导从 Ros 样结构到真核 ZF 样结构的结构转变。这一观察结果为折叠进化的结构上合理和简约的情景提供了证据,为细菌到真核生物的水平基因转移(HGT)假说提供了结构基础。

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