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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Two novel mutations of Wiskott-Aldrich syndrome: the molecular prediction of interaction between the mutated WASP L101P with WASP-interacting protein by molecular modeling
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Two novel mutations of Wiskott-Aldrich syndrome: the molecular prediction of interaction between the mutated WASP L101P with WASP-interacting protein by molecular modeling

机译:Wiskott-Aldrich综合征的两个新突变:通过分子建模预测突变的WASP L101P与WASP相互作用蛋白之间相互作用的分子

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摘要

Wiskott-Aldrich syndrome (WAS) is an X-linked disorder characterized by eczema, thrombocytopenia and increased susceptibility of infections, with mutations of the WAS gene being responsible for WAS and X-linked thrombocytopenia. Herein, two novel mutations of WAS at T336C on exon 3, and at 1326-1329, a G deletion on exon 10, resulting in L101P missense mutation and frameshift mutation 444 stop, respectively, are reported. The affected patients with either mutation showed severe suppression of WAS protein (WASP) levels, T cell proliferation, and CFSE-labeled T cells division. Because WASP L 101 have not shown direct nuclear Overhauser effect (NOE) contact with the WASP-interacting protein (WIP) in NMR spectroscopy, molecular modeling was performed to evaluate the molecular effect of WASP P101 to WIP peptide. It is presumed that P101 induced a conformational change in the Q99 residue of WASP and made the side chain of Q99 move away from the WIP peptide, resulting in disruption of the hydrogen bond between Q99 WASP and Y475 WIP. A possible model for the molecular pathogenesis of WAS has been proposed by analyzing the interactions of WASP and WIP using a molecular modeling study. (C) 2004 Elsevier B.V. All rights reserved.
机译:Wiskott-Aldrich综合征(WAS)是一种X连锁疾病,以湿疹,血小板减少和感染易感性为特征,WAS基因突变是WAS和X连锁血小板减少的原因。在此,报道了在外显子3的T336C和在1326-1329的WAS的两个新突变,外显子10的G缺失,分别导致L101P错义突变和移码突变444终止。任一突变的受影响患者均表现出WAS蛋白(WASP)水平,T细胞增殖和CFSE标记的T细胞分裂的严重抑制。由于WASP L 101在NMR光谱中未显示与WASP相互作用蛋白(WIP)的直接核Overhauser效应(NOE)接触,因此进行了分子建模以评估WASP P101对WIP肽的分子作用。推测P101在WASP的Q99残基中引起构象变化,并使Q99的侧链移离WIP肽,导致Q99 WASP和Y475 WIP之间的氢键断裂。通过使用分子模型研究分析WASP和WIP的相互作用,提出了WAS分子发病机理的可能模型。 (C)2004 Elsevier B.V.保留所有权利。

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