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A型核纤层蛋白中的p.R482W替代突变在邓尼根型家族性部分脂肪营养不良中会使固醇调节元件结合蛋白1(SREBP1)的活性失调。

The p.R482W substitution in A-type lamins deregulates SREBP1 activity in Dunnigan-type familial partial lipodystrophy.

作者信息

Vadrot Nathalie, Duband-Goulet Isabelle, Cabet Eva, Attanda Wikayatou, Barateau Alice, Vicart Patrick, Gerbal Fabien, Briand Nolwenn, Vigouroux Corinne, Oldenburg Anja R, Lund Eivind G, Collas Philippe, Buendia Brigitte

机构信息

Unit of Functional and Adaptive Biology (BFA), Université Paris Diderot-Paris 7 Affiliated with CNRS, 4 rue Marie-Andrée Lagroua Weill-Halle, Paris Cedex 13 75205, France.

Université Paris Diderot, Matière et Systèmes Complexes, CNRS UMR 7057, 10 rue Alice Domon et Leonie Duquet, Paris Cedex 13 75205, France, Physics Department, Université Pierre et Marie Curie, Paris UFR925, France.

出版信息

Hum Mol Genet. 2015 Apr 1;24(7):2096-109. doi: 10.1093/hmg/ddu728. Epub 2014 Dec 18.

Abstract

Nuclear lamins are involved in many cellular functions due to their ability to bind numerous partners including chromatin and transcription factors, and affect their properties. Dunnigan type familial partial lipodystrophy (FPLD2; OMIM#151660) is caused in most cases by the A-type lamin R482W mutation. We report here that the R482W mutation affects the regulatory activity of sterol response element binding protein 1 (SREBP1), a transcription factor that regulates hundreds of genes involved in lipid metabolism and adipocyte differentiation. Using in situ proximity ligation assays (PLA), reporter assays and biochemical and transcriptomic approaches, we show that interactions of SREBP1 with lamin A and lamin C occur at the nuclear periphery and in the nucleoplasm. These interactions involve the Ig-fold of A-type lamins and are favored upon SREBP1 binding to its DNA target sequences. We show that SREBP1, LMNA and sterol response DNA elements form ternary complexes in vitro. In addition, overexpression of A-type lamins reduces transcriptional activity of SREBP1. In contrast, both overexpression of LMNA R482W in primary human preadipocytes and endogenous expression of A-type lamins R482W in FPLD2 patient fibroblasts, reduce A-type lamins-SREBP1 in situ interactions and upregulate a large number of SREBP1 target genes. As this LMNA mutant was previously shown to inhibit adipogenic differentiation, we propose that deregulation of SREBP1 by mutated A-type lamins constitutes one underlying mechanism of the physiopathology of FPLD2. Our data suggest that SREBP1 targeting molecules could be considered in a therapeutic context.

摘要

核纤层蛋白因其能够结合包括染色质和转录因子在内的众多伴侣并影响其特性,而参与多种细胞功能。邓尼根型家族性部分脂肪营养不良(FPLD2;OMIM#151660)在大多数情况下是由A型核纤层蛋白的R482W突变引起的。我们在此报告,R482W突变影响固醇调节元件结合蛋白1(SREBP1)的调节活性,SREBP1是一种调节数百个参与脂质代谢和脂肪细胞分化基因的转录因子。通过原位邻近连接分析(PLA)、报告基因分析以及生化和转录组学方法,我们表明SREBP1与A型核纤层蛋白和C型核纤层蛋白的相互作用发生在核周边和核质中。这些相互作用涉及A型核纤层蛋白的免疫球蛋白折叠结构域,并且在SREBP1与其DNA靶序列结合时更易发生。我们表明SREBP1、LMNA(编码A型核纤层蛋白的基因)和固醇反应性DNA元件在体外形成三元复合物。此外,A型核纤层蛋白的过表达降低了SREBP1的转录活性。相反,在原代人前脂肪细胞中LMNA R482W的过表达以及FPLD2患者成纤维细胞中A型核纤层蛋白R482W的内源性表达,均减少了A型核纤层蛋白与SREBP1的原位相互作用,并上调了大量SREBP1靶基因。由于此前已表明这种LMNA突变体可抑制脂肪生成分化,我们提出突变的A型核纤层蛋白对SREBP1的失调构成了FPLD2生理病理学的一种潜在机制。我们的数据表明,在治疗背景下可以考虑靶向SREBP1的分子。

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