首页> 外文期刊>Nucleic Acids Research >Crystal structure of the MATa1/MATalpha2 homeodomain heterodimer in complex with DNA containing an A-tract.
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Crystal structure of the MATa1/MATalpha2 homeodomain heterodimer in complex with DNA containing an A-tract.

机译:MATa1 / MATalpha2同源异源二聚体与包含A链的DNA形成复合物的晶体结构。

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The crystal structure of the heterodimer formed by the DNA binding domains of the yeast mating type transcription factors, MATa1 and MATalpha2, bound to a 21 bp DNA fragment has been determined at 2.5 A resolution. The DNA fragment in the present study differs at four central base pairs from the DNA sequence used in the previously studied ternary complex. These base pair changes give rise to a (dA5).(dT5) tract without changing the overall base composition of the DNA. The resulting A-tract occurs near the center of the overall 60 degrees bend in the DNA. Comparison of the two structures shows that the structural details of the DNA bend are maintained despite the DNA sequence changes. Analysis of the A5-tract DNA subfragment shows that it contains a bend toward the minor groove centered at one end of the A-tract. The observed bend is larger than that observed in the crystal structures of A-tracts embedded in uncomplexed DNA, which are straight and have been presumed to be quite rigid. Variation of the central DNA base sequence reverses the two AT base pairs contacted in the minor groove by Arg7 of the alpha2 N-terminal arm without significantly altering the DNA binding affinity of the a1/alpha2 heterodimer. The Arg7 side chain accommodates the sequence change by forming alternate H bond interactions, in agreement with the proposal that minor groove base pair recognition is insensitive to base pair reversal. Furthermore, the minor groove spine of hydration, which stabilizes the narrowed minor groove caused by DNA bending, is conserved in both structures. We also find that many of the water-mediated hydrogen bonds between the a1 and alpha2 homeodomains and the DNA are highly conserved, indicating an important role for water in stabilization of the a1/alpha2-DNA complex.
机译:由酵母交配型转录因子的DNA结合结构域MATa1和MATalpha2结合到21 bp DNA片段形成的异二聚体的晶体结构已在2.5 A分辨率下确定。本研究中的DNA片段与先前研究的三元复合物中使用的DNA序列在四个中央碱基对上不同。这些碱基对的变化产生了(dA5)。(dT5)片段,而没有改变DNA的整体碱基组成。最终的A形束出现在DNA整体60度弯曲的中心附近。两种结构的比较表明,尽管DNA序列发生了变化,但仍保留了DNA弯曲的结构细节。对A5片段DNA亚片段的分析表明,它包含一个朝着以A片段一端为中心的小沟的弯曲。观察到的弯曲比在未复合的DNA中嵌入的A束晶体结构观察到的弯曲要大,弯曲的晶体是笔直的,并且被认为是非常刚性的。中央DNA碱基序列的变化使α2N末端臂的Arg7在小沟中接触的两个AT碱基对反向,而没有显着改变a1 /α2异二聚体的DNA结合亲和力。 Arg7侧链通过形成交替的H键相互作用来适应序列变化,这与小沟碱基对识别对碱基对反转不敏感的提议相一致。此外,在两个结构中均保留了水合的小沟脊,该水化稳定了由DNA弯曲引起的变窄的小沟。我们还发现a1和alpha2同源域与DNA之间的许多水介导的氢键都是高度保守的,表明水在稳定a1 / alpha2-DNA复合物中起着重要作用。

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