Payne Marvin A
Department of Chemistry and Biochemistry, La Sierra University, 4500 Riverwalk Parkway, Riverside, CA, USA.
World J Biol Chem. 2011 Jun 26;2(6):161-6. doi: 10.4331/wjbc.v2.i6.161.
The zinc finger motif was used as a vehicle for the initial discovery of Ikaros in the context of T-cell differentiation and has been central to all subsequent analyses of Ikaros function. The Ikaros gene is alternately spliced to produce several isoforms that confer diversity of function and consequently have complicated analysis of the function of Ikaros in vivo. Key features of Ikaros in vivo function are associated with six C2H2 zinc fingers; four of which are alternately incorporated in the production of the various Ikaros isoforms. Although no complete structures are available for the Ikaros protein or any of its family members, considerable evidence has accumulated about the structure of zinc fingers and the role that this structure plays in the functions of the Ikaros family of proteins. This review summarizes the structural aspects of Ikaros zinc fingers, individually, and in tandem to provide a structural context for Ikaros function and to provide a structural basis to inform the design of future experiments with Ikaros and its family members.
锌指基序在T细胞分化的背景下被用作最初发现Ikaro的载体,并且在随后所有对Ikaro功能的分析中都处于核心地位。Ikaro基因通过可变剪接产生几种异构体,这些异构体赋予了功能多样性,因此使得对Ikaro在体内功能的分析变得复杂。Ikaro在体内功能的关键特征与六个C2H2锌指有关;其中四个在各种Ikaro异构体的产生过程中被交替整合。尽管目前尚无Ikaro蛋白或其任何家族成员的完整结构,但关于锌指的结构以及该结构在Ikaro蛋白家族功能中所起的作用,已有大量证据积累。本综述总结了Ikaro锌指的结构方面,包括单个锌指以及串联锌指,以提供Ikaro功能的结构背景,并为未来针对Ikaro及其家族成员的实验设计提供结构基础。