首页> 外文OA文献 >Crystal structure of a trimeric form of the KV7.1 (KCNQ1) A-domain tail coiled-coil reveals structural plasticity and context dependent changes in a putative coiled-coil trimerization motif
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Crystal structure of a trimeric form of the KV7.1 (KCNQ1) A-domain tail coiled-coil reveals structural plasticity and context dependent changes in a putative coiled-coil trimerization motif

机译:KV7.1(KCNQ1)A域尾部卷曲螺旋的三聚体形式的晶体结构揭示了推定的卷曲螺旋三聚体基序中的结构可塑性和上下文相关的变化

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摘要

Coiled-coils are widespread protein–protein interaction motifs typified by the heptad repeat (abcdefg)n in which “a” and “d” positions are hydrophobic residues. Although identification of likely coiled-coil sequences is robust, prediction of strand order remains elusive. We present the X-ray crystal structure of a short form (residues 583–611), “Q1-short,” of the coiled-coil assembly specificity domain from the voltage-gated potassium channel Kv7.1 (KCNQ1) determined at 1.7 Å resolution. Q1-short lacks one and half heptads present in a previously studied tetrameric coiled-coil construct, Kv7.1 585–621, “Q1-long.” Surprisingly, Q1-short crystallizes as a trimer. In solution, Q1-short self-assembles more poorly than Q1-long and depends on an R-h-x-x-h-E motif common to trimeric coiled-coils. Addition of native sequences that include “a” and “d” positions C-terminal to Q1-short overrides the R-h-x-x-h-E motif influence and changes assembly state from a weakly associated trimer to a strongly associated tetramer. These data provide a striking example of a naturally occurring amino sequence that exhibits context-dependent folding into different oligomerization states, a three-stranded versus a four-stranded coiled-coil. The results emphasize the degenerate nature of coiled-coil energy landscapes in which small changes can have drastic effects on oligomerization. Discovery of these properties in an ion channel assembly domain and prevalence of the R-h-x-x-h-E motif in coiled-coil assembly domains of a number of different channels that are thought to function as tetrameric assemblies raises the possibility that such sequence features may be important for facilitating the assembly of intermediates en route to the final native state.
机译:卷螺旋是广泛的蛋白-蛋白相互作用基序,其特征是七肽重复(abcdefg)n,其中“ a”和“ d”位置是疏水残基。尽管对可能的卷曲螺旋序列的鉴定是可靠的,但是对链序的预测仍然难以捉摸。我们介绍了从电压门控钾通道Kv7.1(KCNQ1)确定为1.7Å时,螺旋线圈组装特异性域的短形式(残基583–611)“ Q1-short”的X射线晶体结构解析度。 Q1-short缺少先前研究的四聚体卷曲螺旋结构Kv7.1 585-621(“ Q1-long”)中存在的一个和一半的七肽。令人惊讶的是,Q1短晶结晶为三聚体。在解决方案中,Q1短的自组装性比Q1短的自组装性差,并且取决于三聚螺旋线圈常见的R-h-x-x-h-E基序。 Q1-short的C端包括“ a”和“ d”位置的天然序列的添加会覆盖R-h-x-x-h-E基序的影响,并将组装状态从弱关联的三聚体变为强关联的四聚体。这些数据提供了一个自然发生的氨基序列的惊人例子,该序列表现出与上下文相关的折叠成不同的低聚状态,即三链和四链卷曲螺旋。结果强调了盘绕线圈能量态势的简并性质,其中小的变化可能对低聚产生巨大影响。在离子通道装配结构域中发现这些特性,并发现许多不同通道的盘绕线圈装配结构域中的RhxxhE基序普遍存在,这些功能被认为是四聚体装配,这增加了此类序列特征对于促进装配的重要性中间产物途中到达最终的原始状态。

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    Xu, Qiang; Minor, Daniel L;

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  • 年度 2009
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