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核纤层蛋白A致病性错义突变对其在体内与emerin相互作用的影响。

Effect of pathogenic mis-sense mutations in lamin A on its interaction with emerin in vivo.

作者信息

Holt Ian, Ostlund Cecilia, Stewart Colin L, Man Nguyen thi, Worman Howard J, Morris Glenn E

机构信息

Biochemistry Group, North East Wales Institute, Wrexham LL11 2AW, UK.

出版信息

J Cell Sci. 2003 Jul 15;116(Pt 14):3027-35. doi: 10.1242/jcs.00599. Epub 2003 Jun 3.

Abstract

Mutations in lamin A/C can cause Emery-Dreifuss muscular dystrophy (EDMD) or a related cardiomyopathy (CMD1A). Using transfection of lamin-A/C-deficient fibroblasts, we have studied the effects of nine pathogenic mutations on the ability of lamin A to assemble normally and to localize emerin normally at the nuclear rim. Five mutations in the rod domain (L85R, N195K, E358K, M371K and R386K) affected the assembly of the lamina. With the exception of mutant L85R, all rod domain mutants induced the formation of large nucleoplasmic foci in about 10% of all nuclei. The presence of emerin in these foci suggests that the interaction of lamin A with emerin is not directly affected by the rod domain mutations. Three mutations in the tail region, R453W, W520S and R527P, might directly affect emerin binding by disrupting the structure of the putative emerin-binding site, because mutant lamin A localized normally to the nuclear rim but its ability to trap emerin was impaired. Nucleoplasmic foci rarely formed in these three cases (<2%) but, when they did so, emerin was absent, consistent with a direct effect of the mutations on emerin binding. The lipodystrophy mutation R482Q, which causes a different phenotype and is believed to act through an emerin-independent mechanism, was indistinguishable from wild-type in its localization and its ability to trap emerin at the nuclear rim. The novel hypothesis suggested by the data is that EDMD/CMD1A mutations in the tail domain of lamin A/C work by direct impairment of emerin interaction, whereas mutations in the rod region cause defective lamina assembly that might or might not impair emerin capture at the nuclear rim. Subtle effects on the function of the lamina-emerin complex in EDMD/CMD1A patients might be responsible for the skeletal and/or cardiac muscle phenotype.

摘要

核纤层蛋白A/C的突变可导致埃默里 - 德赖富斯肌营养不良症(EDMD)或相关的心肌病(CMD1A)。通过转染缺乏核纤层蛋白A/C的成纤维细胞,我们研究了9种致病突变对核纤层蛋白A正常组装以及将emerin正常定位在核边缘能力的影响。杆状结构域中的5种突变(L85R、N195K、E358K、M371K和R386K)影响了核纤层的组装。除了突变体L85R外,所有杆状结构域突变体在约10%的细胞核中诱导形成大的核质聚集体。这些聚集体中存在emerin表明核纤层蛋白A与emerin的相互作用不受杆状结构域突变的直接影响。尾部区域的3种突变,R453W、W520S和R527P,可能通过破坏假定的emerin结合位点的结构直接影响emerin结合,因为突变的核纤层蛋白A正常定位到核边缘但其捕获emerin的能力受损。在这三种情况下很少形成核质聚集体(<2%),但当形成时,emerin不存在,这与突变对emerin结合的直接影响一致。脂肪营养不良突变R482Q导致不同的表型,并且被认为通过不依赖emerin的机制起作用,其在定位以及在核边缘捕获emerin的能力方面与野生型没有区别。数据提出的新假说是,核纤层蛋白A/C尾部结构域中的EDMD/CMD1A突变通过直接损害emerin相互作用起作用,而杆状区域的突变导致有缺陷的核纤层组装,这可能会也可能不会损害核边缘的emerin捕获。EDMD/CMD1A患者中核纤层 - emerin复合物功能的细微影响可能是骨骼肌和/或心脏肌肉表型的原因。

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