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Limited proteolysis as a tool to probe the tertiary conformation of dysferlin and structural consequences of patient missense variant L344P

机译:有限的蛋白水解作用可作为工具来检测dysferlin的三级构象以及患者错义变异体L344P的结构后果

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摘要

Dysferlin is a large transmembrane protein that plays a key role in cell membrane repair and underlies a recessive form of inherited muscular dystrophy. Dysferlinopathy is characterized by absence or marked reduction of dysferlin protein with 43% of reported pathogenic variants being missense variants that span the length of the dysferlin protein. The unique structure of dysferlin, with seven tandem C2 domains separated by linkers, suggests dysferlin may dynamically associate with phospholipid membranes in response to Ca2+ signaling. However, the overall conformation of the dysferlin protein is uncharacterized. To dissect the structural architecture of dysferlin, we have applied the method of limited proteolysis, which allows nonspecific digestion of unfolded peptides by trypsin. Using five antibodies spanning the dysferlin protein, we identified a highly reproducible jigsaw map of dysferlin fragments protected from digestion. Our data infer a modular architecture of four tertiary domains: 1) C2A, which is readily removed as a solo domain; 2) midregion C2B-C2C-Fer-DysF, commonly excised as an intact module, with subdigestion to different fragments suggesting several dynamic folding options; 3) C-terminal four-C2 domain module; and 4) calpain-cleaved mini-dysferlinC72, which is particularly resistant to proteolysis. Importantly, we reveal a patient missense variant, L344P, that largely escapes proteasomal surveillance and shows subtle but clear changes in tertiary conformation. Accompanying evidence from immunohistochemistry and flow cytometry using antibodies with conformationally sensitive epitopes supports proteolysis data. Collectively, we provide insight into the structural topology of dysferlin and show how a single missense mutation within dysferlin can exert local changes in tertiary conformation.
机译:dysferlin是一种大型跨膜蛋白,在细胞膜修复中起关键作用,并且是遗传性肌营养不良症的隐性形式的基础。 dysferlin病变的特征是dysferlin蛋白不存在或明显减少,据报道43%的致病变体是跨越dysferlin蛋白长度的错义变体。 dysferlin的独特结构具有七个由连接子分隔的串联C2结构域,表明dysferlin可能响应Ca 2 + 信号而动态地与磷脂膜结合。但是,dysferlin蛋白的整体构象尚未鉴定。为了剖析dysferlin的结构结构,我们应用了有限的蛋白水解方法,该方法允许胰蛋白酶对未折叠的肽进行非特异性消化。使用跨越dysferlin蛋白的五种抗体,我们确定了可保护免于消化的dysferlin片段的高度可复制的拼图图。我们的数据推断出四个第三级域的模块化架构:1)C2A,很容易作为一个单独域删除; 2)中部区域C2B-C2C-Fer-DysF,通常作为完整模块被切除,对不同片段的亚消化表明存在几种动态折叠选项; 3)C端四C2域模块; 4)钙蛋白酶切割的微型dysferlinC72,它特别耐蛋白水解。重要的是,我们揭示了一个患者错义变体L344P,该变体很大程度上逃避了蛋白酶体的监测,并在三级构象中显示出细微但清晰的变化。免疫组织化学和流式细胞术的佐证,使用具有构象敏感表位的抗体,支持蛋白水解数据。总的来说,我们提供了对dysferlin的结构拓扑的洞察力,并展示了dysferlin内的单个错义突变如何在三级构象上产生局部变化。

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