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在显溶剂中用全原子多正则分子动力学研究具有和不具有 KIX 结构域的固有无序蛋白 pKID 的构象集合。

Conformational Ensembles of an Intrinsically Disordered Protein pKID with and without a KIX Domain in Explicit Solvent Investigated by All-Atom Multicanonical Molecular Dynamics.

机构信息

Graduate School of Advanced Science and Engineering, Waseda University, Okubo 3-4-1, Shinjuku-Ku, Tokyo 169-8555, Japan.

Institute for Protein Research, Osaka University, Suita, Osaka, 565-0871, Japan.

出版信息

Biomolecules. 2012 Feb 22;2(1):104-21. doi: 10.3390/biom2010104.

DOI:10.3390/biom2010104
PMID:24970129
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4030872/
Abstract

The phosphorylated kinase-inducible activation domain (pKID) adopts a helix-loop-helix structure upon binding to its partner KIX, although it is unstructured in the unbound state. The N-terminal and C-terminal regions of pKID, which adopt helices in the complex, are called, respectively, αA and αB. We performed all-atom multicanonical molecular dynamics simulations of pKID with and without KIX in explicit solvents to generate conformational ensembles. Although the unbound pKID was disordered overall, αA and αB exhibited a nascent helix propensity; the propensity of αA was stronger than that of αB, which agrees with experimental results. In the bound state, the free-energy landscape of αB involved two low free-energy fractions: native-like and non-native fractions. This result suggests that αB folds according to the induced-fit mechanism. The αB-helix direction was well aligned as in the NMR complex structure, although the αA helix exhibited high flexibility. These results also agree quantitatively with experimental observations. We have detected that the αB helix can bind to another site of KIX, to which another protein MLL also binds with the adopting helix. Consequently, MLL can facilitate pKID binding to the pKID-binding site by blocking the MLL-binding site. This also supports experimentally obtained results.

摘要

磷酸化激酶诱导激活结构域(pKID)与它的伴侣 KIX 结合时会形成一个螺旋-环-螺旋结构,尽管在未结合状态下它是无结构的。pKID 的 N 端和 C 端区域在复合物中分别采用螺旋结构,分别称为αA 和αB。我们在含有和不含有 KIX 的明胶溶剂中对 pKID 进行了全原子多正则分子动力学模拟,以生成构象集合。尽管未结合的 pKID 总体上是无序的,但αA 和αB 表现出初始螺旋倾向;αA 的倾向比αB 强,这与实验结果一致。在结合状态下,αB 的自由能景观涉及两个低自由能分数:天然样和非天然样分数。这一结果表明,αB 按照诱导契合机制折叠。尽管αA 螺旋表现出高度的灵活性,但αB 螺旋的方向与 NMR 复合物结构非常吻合。这些结果也在定量上与实验观察结果一致。我们已经检测到αB 螺旋可以与 KIX 的另一个结合位点结合,另一个蛋白质 MLL 也与采用螺旋的 KIX 结合。因此,MLL 可以通过阻止 MLL 结合位点来促进 pKID 与 pKID 结合位点的结合。这也支持了实验获得的结果。

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