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极长链酰基辅酶A脱氢酶缺乏症中错义突变的比较效应:通过结构、功能和药理学方法进行的联合分析

Compared effects of missense mutations in Very-Long-Chain Acyl-CoA Dehydrogenase deficiency: Combined analysis by structural, functional and pharmacological approaches.

作者信息

Gobin-Limballe Stéphanie, McAndrew Ryan P, Djouadi Fatima, Kim Jung-Ja, Bastin Jean

机构信息

Service de Génétique Médicale, Hôpital Necker-Enfants Malades, Paris, France.

出版信息

Biochim Biophys Acta. 2010 May;1802(5):478-84. doi: 10.1016/j.bbadis.2010.01.001. Epub 2010 Jan 12.

Abstract

Very-Long-Chain Acyl-CoA Dehydrogenase deficiency (VLCADD) is an autosomal recessive disorder considered as one of the more common ss-oxidation defects, possibly associated with neonatal cardiomyopathy, infantile hepatic coma, or adult-onset myopathy. Numerous gene missense mutations have been described in these VLCADD phenotypes, but only few of them have been structurally and functionally analyzed, and the molecular basis of disease variability is still poorly understood. To address this question, we first analyzed fourteen disease-causing amino acid changes using the recently described crystal structure of VLCAD. The predicted effects varied from the replacement of amino acid residues lining the substrate binding cavity, involved in holoenzyme-FAD interactions or in enzyme dimerisation, predicted to have severe functional consequences, up to amino acid substitutions outside key enzyme domains or lying on near enzyme surface, with predicted milder consequences. These data were combined with functional analysis of residual fatty acid oxidation (FAO) and VLCAD protein levels in patient cells harboring these mutations, before and after pharmacological stimulation by bezafibrate. Mutations identified as detrimental to the protein structure in the 3-D model were generally associated to profound FAO and VLCAD protein deficiencies in the patient cells, however, some mutations affecting FAD binding or monomer-monomer interactions allowed a partial response to bezafibrate. On the other hand, bezafibrate restored near-normal FAO rates in some mutations predicted to have milder consequences on enzyme structure. Overall, combination of structural, biochemical, and pharmacological analysis allowed assessment of the relative severity of individual mutations, with possible applications for disease management and therapeutic approach.

摘要

极长链酰基辅酶A脱氢酶缺乏症(VLCADD)是一种常染色体隐性疾病,被认为是较常见的β-氧化缺陷之一,可能与新生儿心肌病、婴儿肝昏迷或成人期肌病有关。在这些VLCADD表型中已描述了许多基因错义突变,但其中只有少数进行了结构和功能分析,疾病变异性的分子基础仍知之甚少。为了解决这个问题,我们首先利用最近描述的VLCAD晶体结构分析了14种致病氨基酸变化。预测的影响各不相同,从底物结合腔内衬氨基酸残基的置换(参与全酶-FAD相互作用或酶二聚化,预计会产生严重的功能后果)到关键酶结构域外或位于酶表面附近的氨基酸替换(预计后果较轻)。这些数据与携带这些突变的患者细胞在苯扎贝特药理刺激前后的残余脂肪酸氧化(FAO)和VLCAD蛋白水平的功能分析相结合。在三维模型中被确定对蛋白质结构有害的突变通常与患者细胞中严重的FAO和VLCAD蛋白缺乏有关,然而,一些影响FAD结合或单体-单体相互作用的突变对苯扎贝特产生了部分反应。另一方面,苯扎贝特在一些预计对酶结构影响较轻的突变中恢复了接近正常的FAO速率。总体而言,结构、生化和药理分析的结合允许评估个体突变的相对严重程度,可能应用于疾病管理和治疗方法。

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