Jiménez José L, Bashir Rumaisa
Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge CB10 1SA, UK.
J Neurol Sci. 2007 Sep 15;260(1-2):114-23. doi: 10.1016/j.jns.2007.04.016. Epub 2007 May 21.
Ferlins are C2 domain proteins involved in membrane fusion events, including membrane repair and synaptic exocytosis, and their deficiency can result in muscular dystrophy and deafness. We have undertaken a structural study of their C2 domains by sequence comparison and homology modelling to understand the function of these poorly characterised proteins and to predict the molecular impact of disease-causing mutations. We observe that non-conservative mutations affecting buried residues tend to result in detrimental phenotypes, likely because of decreased protein stability, whereas most variants with replacements in surface residues do not. The few cases of exposed residues altered in variants known to cause diseases are found in conserved areas of functional importance, including essential calcium-binding regions, as deduced by analogy to other characterised C2 domains. Furthermore, we report distinct features of some C2 domains in the two known ferlin subfamilies that correlates with the presence or absence of the DysF domains. Taken altogether, our results highlight potential targets for further experimental analyses to understand the function of ferlin proteins. We believe our modelling data will aid the diagnosis of diseases associated with ferlin mutations and the development of therapeutic strategies.
ferlins是参与膜融合事件的C2结构域蛋白,包括膜修复和突触胞吐作用,其缺陷可导致肌肉萎缩症和耳聋。我们通过序列比较和同源建模对其C2结构域进行了结构研究,以了解这些特征尚不明确的蛋白的功能,并预测致病突变的分子影响。我们观察到,影响埋藏残基的非保守突变往往会导致有害表型,这可能是由于蛋白质稳定性降低所致,而大多数表面残基发生替换的变体则不会。通过与其他已表征的C2结构域进行类比推断,已知导致疾病的变体中少数暴露残基发生改变的情况存在于功能重要的保守区域,包括必需的钙结合区域。此外,我们报告了两个已知ferlin亚家族中一些C2结构域的不同特征,这些特征与DysF结构域的存在与否相关。综上所述,我们的结果突出了进一步实验分析的潜在靶点,以了解ferlin蛋白的功能。我们相信我们的建模数据将有助于诊断与ferlin突变相关的疾病,并有助于开发治疗策略。