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首页> 外文期刊>Journal of Molecular Biology >The interplay of ligand binding and quaternary structure in the diverse interactions of dynein light chain LC8.
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The interplay of ligand binding and quaternary structure in the diverse interactions of dynein light chain LC8.

机译:动力蛋白轻链LC8的各种相互作用中配体结合和四级结构的相互作用。

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摘要

Dynein light chain LC8 is a small, dimeric, and very highly conserved globular protein that is an integral part of the dynein and myosin molecular motors but appears to have a broader role in multiple protein complexes unrelated to molecular motors. LC8 binds to two families of targets: those having a KXTQT sequence fingerprint and those having a GIQVD fingerprint. All known LC8 binding partners containing these fingerprints share a common binding site on LC8 that raises the question of what determines binding specificity. Here, we present the crystal structure of apo-LC8 at 1.7-A resolution, which, when compared with the crystal structures of several LC8 complexes, gives insight into the mechanism underlying the binding diversity of LC8. Peptide binding is associated with a shift in quaternary structure that expands the hydrophobic binding surface available to the ligand, in addition to changes in tertiary structure and ordering of LC8 around the binding groove. The observed quaternary shift suggests a mechanism by which binding at one of the two identical sites can influence binding at the other. NMR spectra of titrations with peptides from each fingerprint family show evidence of allosteric interaction between the two binding sites, to a differing degree in the two ligand families. Allosteric interaction between the binding sites may be a mechanism to promote simultaneous binding of ligands from the same family, providing a physiological role for the two fingerprints.
机译:Dynein轻链LC8是小的,二聚体且高度保守的球形蛋​​白质,是Dynein和Myosin分子马达的组成部分,但似乎在与分子马达无关的多种蛋白质复合物中具有更广泛的作用。 LC8结合两个目标家族:具有KXTQT序列指纹的那些和具有GIQVD指纹的那些。包含这些指纹的所有已知LC8结合伴侣都在LC8上拥有一个共同的结合位点,这引发了决定结合特异性的问题。在这里,我们以1.7-A的分辨率介绍apo-LC8的晶体结构,与几种LC8配合物的晶体结构相比,可以深入了解LC8结合多样性的潜在机制。肽的结合与四级结构的变化有关,该结构扩展了配体可利用的疏水性结合表面,此外三级结构发生了变化,LC8围绕结合槽的排列也发生了变化。观察到的四级位移提示了一种机制,通过该机制,两个相同位点之一的结合可以影响另一个位点的结合。来自每个指纹家族的肽的滴定的NMR谱显示出两个结合位点之间的变构相互作用的证据,在两个配体家族中具有不同的程度。结合位点之间的变构相互作用可能是促进同一家族配体同时结合的机制,为两个指纹提供了生理作用。

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