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同源结构域-DNA识别中的协同结合:MATa1同源结构域的溶液结构与动力学

Cooperative ordering in homeodomain-DNA recognition: solution structure and dynamics of the MATa1 homeodomain.

作者信息

Anderson J S, Forman M D, Modleski S, Dahlquist F W, Baxter S M

机构信息

Department of Chemistry, Union College, Schenectady, New York 12308, USA.

出版信息

Biochemistry. 2000 Aug 22;39(33):10045-54. doi: 10.1021/bi000677z.

Abstract

The mating type homeodomain proteins, MATa1 and MATalpha2, combine to form a heterodimer to bind DNA in diploid yeast cells. The a1-alpha2 heterodimer tightly and specifically binds haploid-specific gene operators to repress transcription. On its own, however, the a1 homeodomain does not bind DNA in a sequence-specific manner. To help understand this interaction, we describe the solution structure and backbone dynamics of the free a1 homeodomain. Free a1 in solution is an ensemble of structures having flexible hinges at the two turns in the small protein fold. Conformational changes in the a1 homeodomain upon ternary complex formation are located in the loop between helix 1 and helix 2, where the C-terminal tail of alpha2 binds to form the heterodimer, and at the C-terminus of helix 3, the DNA recognition helix. The observed differences, comparing the free and bound a1 structures, suggest a mechanism linking van der Waals stacking changes to the ordering of a final turn in the DNA-binding helix of a1. The tail of alpha2 induces changes in loop 1 of a1 that push it toward a properly folded DNA binding conformation.

摘要

交配型同源结构域蛋白MATa1和MATalpha2结合形成异源二聚体,在二倍体酵母细胞中与DNA结合。a1 - alpha2异源二聚体紧密且特异性地结合单倍体特异性基因操纵子以抑制转录。然而,单独的a1同源结构域不会以序列特异性方式与DNA结合。为了帮助理解这种相互作用,我们描述了游离a1同源结构域的溶液结构和主链动力学。溶液中的游离a1是在小蛋白折叠的两个转角处具有柔性铰链的结构集合。三元复合物形成时a1同源结构域的构象变化位于螺旋1和螺旋2之间的环中,其中alpha2的C末端尾巴结合形成异源二聚体,以及在螺旋3的C末端,即DNA识别螺旋处。比较游离和结合的a1结构时观察到的差异表明了一种将范德华堆积变化与a1的DNA结合螺旋中最后一圈的有序化联系起来的机制。alpha2的尾巴诱导a1的环1发生变化,将其推向正确折叠的DNA结合构象。

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