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慢性铍病:揭示铍离子和小肽与HLA - DP2结合的作用

Chronic Beryllium Disease: revealing the role of beryllium ion and small peptides binding to HLA-DP2.

作者信息

Petukh Marharyta, Wu Bohua, Stefl Shannon, Smith Nick, Hyde-Volpe David, Wang Li, Alexov Emil

机构信息

Computational Biophysics and Bioinformatics, Physics Department, Clemson University, Clemson, South Carolina, United States of America.

School of Nursing, Clemson University, Clemson, South Carolina, United States of America.

出版信息

PLoS One. 2014 Nov 4;9(11):e111604. doi: 10.1371/journal.pone.0111604. eCollection 2014.

Abstract

Chronic Beryllium (Be) Disease (CBD) is a granulomatous disorder that predominantly affects the lung. The CBD is caused by Be exposure of individuals carrying the HLA-DP2 protein of the major histocompatibility complex class II (MHCII). While the involvement of Be in the development of CBD is obvious and the binding site and the sequence of Be and peptide binding were recently experimentally revealed [1], the interplay between induced conformational changes and the changes of the peptide binding affinity in presence of Be were not investigated. Here we carry out in silico modeling and predict the Be binding to be within the acidic pocket (Glu26, Glu68 and Glu69) present on the HLA-DP2 protein in accordance with the experimental work [1]. In addition, the modeling indicates that the Be ion binds to the HLA-DP2 before the corresponding peptide is able to bind to it. Further analysis of the MD generated trajectories reveals that in the presence of the Be ion in the binding pocket of HLA-DP2, all the different types of peptides induce very similar conformational changes, but their binding affinities are quite different. Since these conformational changes are distinctly different from the changes caused by peptides normally found in the cell in the absence of Be, it can be speculated that CBD can be caused by any peptide in presence of Be ion. However, the affinities of peptides for Be loaded HLA-DP2 were found to depend of their amino acid composition and the peptides carrying acidic group at positions 4 and 7 are among the strongest binders. Thus, it is proposed that CBD is caused by the exposure of Be of an individual carrying the HLA-DP2*0201 allele and that the binding of Be to HLA-DP2 protein alters the conformational and ionization properties of HLA-DP2 such that the binding of a peptide triggers a wrong signaling cascade.

摘要

慢性铍(Be)病(CBD)是一种主要影响肺部的肉芽肿性疾病。CBD是由接触携带主要组织相容性复合体II类(MHCII)的HLA - DP2蛋白的个体接触铍引起的。虽然铍在CBD发展中的作用很明显,并且铍与肽结合的位点和序列最近已通过实验揭示[1],但在铍存在下诱导的构象变化与肽结合亲和力变化之间的相互作用尚未得到研究。在此,我们进行了计算机模拟,并根据实验工作[1]预测铍结合在HLA - DP2蛋白上存在的酸性口袋(Glu26、Glu68和Glu69)内。此外,模拟表明铍离子在相应肽能够结合之前就与HLA - DP2结合。对分子动力学(MD)生成轨迹的进一步分析表明,在HLA - DP2的结合口袋中存在铍离子的情况下,所有不同类型的肽都会诱导非常相似的构象变化,但它们的结合亲和力却大不相同。由于这些构象变化与在没有铍的情况下细胞中正常发现的肽所引起的变化明显不同,可以推测在铍离子存在下任何肽都可能导致CBD。然而,发现肽对负载铍的HLA - DP2的亲和力取决于它们的氨基酸组成,并且在第4和第7位带有酸性基团的肽是最强的结合剂之一。因此,有人提出CBD是由携带HLA - DP2*0201等位基因的个体接触铍引起的,并且铍与HLA - DP2蛋白的结合改变了HLA - DP2的构象和电离特性,使得肽的结合触发了错误的信号级联反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff86/4219729/5cec322c8877/pone.0111604.g002.jpg

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