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错义突变 L67P、L182P、G242V 和 R297S 导致的 Peutz-Jeghers 综合征(PJS)对 LKB1(肝激酶 B1)蛋白结构动力学的影响。

Effects of Peutz-Jeghers syndrome (PJS) causing missense mutations L67P, L182P, G242V and R297S on the structural dynamics of LKB1 (Liver kinase B1) protein.

机构信息

a Centre for Bioinformatics, School of Life Sciences , Pondicherry University , Puducherry 605014 , India.

出版信息

J Biomol Struct Dyn. 2019 Feb;37(3):796-810. doi: 10.1080/07391102.2018.1441070. Epub 2018 Feb 23.

DOI:10.1080/07391102.2018.1441070
PMID:29447078
Abstract

The liver kinase B1 (LKB1) is encoded by LKB1 gene. Several pathogenic mutations of LKB1 causing Peutz-Jeghers syndrome and also cancers in breast, gastric, pancreas, and colon have been reported. The present study is focused to analyze the effects on the structural dynamics of LKB1 caused by the 4 pathogenic missense mutations (L67P, L182P, G242V, and R297S), which are reported to reduce the catalytic activity. In this study, the structural changes of LKB1 in apo- and in heterotrimeric complex (LKB1-STRADα-MO25α) form with wild and mutated LKB1 are investigated using all atomistic molecular dynamic simulation. The present study reveals that these four mutations initiate local structural distortions and the solvent accessibility of the surrounding regions of ATP-binding pocket such as glycine-rich loop, αB and αC loop, activation and catalytic loops. The mutations of L67P, L182P, and G242 V induce distortions of the secondary structure of β1-β3 sheets, π - π interaction (observed between Phe204 of LKB1 and Phe243 of MO25α), and increase the helical properties (both helical twist and length) of the adjacent αH-helix, respectively. The active kinase features like the conformation of catalytic and activation loops, salt bridge and, finally, the formation of stable R- and C-hydrophobic spines are also found to be perturbed by these mutations. Hence, the observed mutation-induced structural distortions fail to coordinate the essential binding nature of LKB1 with STRADα and MO25α, which eventually affects the native function of LKB1. These observations are in line with the experimentally reported reduced kinase activity of LKB1.

摘要

肝激酶 B1(LKB1)由 LKB1 基因编码。已经报道了几种导致 Peutz-Jeghers 综合征和乳腺癌、胃癌、胰腺癌和结肠癌的 LKB1 致病突变。本研究旨在分析报道能降低催化活性的 4 种致病性错义突变(L67P、L182P、G242V 和 R297S)对 LKB1 结构动力学的影响。在这项研究中,使用全原子分子动力学模拟研究了apo 状态和异三聚体复合物(LKB1-STRADα-MO25α)形式中野生型和突变型 LKB1 的结构变化。本研究揭示,这四种突变会引发局部结构扭曲以及 ATP 结合口袋周围区域(甘氨酸丰富环、αB 和 αC 环、激活和催化环)的溶剂可及性变化。L67P、L182P 和 G242V 突变会导致β1-β3 片层的二级结构扭曲、π-π 相互作用(在 LKB1 的 Phe204 和 MO25α 的 Phe243 之间观察到)以及相邻αH-螺旋的螺旋特性(螺旋扭曲和长度)增加。活性激酶特征,如催化和激活环的构象、盐桥,最终是稳定的 R-和 C-疏水性脊柱的形成,也被发现受到这些突变的干扰。因此,观察到的突变诱导结构扭曲无法协调 LKB1 与 STRADα 和 MO25α 的基本结合性质,这最终会影响 LKB1 的天然功能。这些观察结果与实验报道的 LKB1 激酶活性降低一致。

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Functional analysis of Peutz-Jeghers mutations reveals that the LKB1 C-terminal region exerts a crucial role in regulating both the AMPK pathway and the cell polarity.黑斑息肉综合征(Peutz-Jeghers)突变的功能分析表明,LKB1蛋白的C末端区域在调节AMPK信号通路和细胞极性方面发挥着关键作用。
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