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首页> 外文期刊>Protein engineering design & selection: PEDS >The structural basis of hyper IgM deficiency-CD40L mutations
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The structural basis of hyper IgM deficiency-CD40L mutations

机译:高IgM缺乏CD40L突变的结构基础

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摘要

X-linked hyper-IgM syndrome (XHIGM) is a primary immunodeficiency characterised by an inability to produce immunoglobulins of the IgG, IgA and IgE isotypes. It is caused by mutations of CD40 ligand (CD40L, CD154), expressed on T-lymphocytes. The interaction of CD40L on T-cells and its receptor CD40 on B-cells is essential for lymphocyte signalling leading to immunoglobulin class switching and B-cell maturation. To understand the structural basis for XHIGM, we utilised bioinformatics methods to analyse all the known CD40L missense mutations at both the sequence and structural level. Our results demonstrate that the 35 different missense mutations have diverse effects on CD40L structure and function, affecting structural disorder and aggregation tendencies, stability maintaining contacts and electrostatic properties. Several mutations also affect residues essential in receptor binding and trimerisation. Experimental study of effects of mutations is laborious and time-consuming and at the structural level often almost impossible. By contrast, precise and useful information about effects of mutations on protein structure and function can readily be obtained by theoretical methods. In this study, all the XHIGM causing missense mutations could be explained in terms of CD40L structure and function. Thus, the molecular basis of the syndrome could be elucidated.
机译:X连锁超IgM综合征(XHIGM)是一种主要的免疫缺陷,其特征在于不能产生IgG,IgA和IgE同种型的免疫球蛋白。它是由T淋巴细胞上表达的CD40配体(CD40L,CD154)突变引起的。 T细胞上的CD40L及其B细胞上的受体CD40的相互作用对于导致免疫球蛋白类别转换和B细胞成熟的淋巴细胞信号传导至关重要。为了了解XHIGM的结构基础,我们利用生物信息学方法在序列和结构水平上分析了所有已知的CD40L错义突变。我们的结果表明,35个不同的错义突变对CD40L的结构和功能具有多种影响,影响结构紊乱和聚集趋势,保持接触和静电特性的稳定性。几种突变也影响受体结合和三聚化中必不可少的残基。突变效应的实验研究既费力又费时,而且在结构水平上通常几乎是不可能的。相反,可以通过理论方法容易地获得有关突变对蛋白质结构和功能的影响的精确和有用的信息。在这项研究中,所有导致错义突变的XHIGM都可以用CD40L的结构和功能来解释。因此,可以阐明该综合征的分子基础。

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