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Towards a mechanistic understanding of lipodystrophy and seipin functions

机译:对脂肪营养不良和脂蛋白功能的机械理解

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CGL (Congenital generalized lipodystrophy) is a genetic disorder characterized by near complete loss of adipose tissue along with increased ectopic fat storage in other organs including liver and muscle. Of the four CGL types, BSCL2 (Berardinelli–Seip Congenital lipodystrophy type?2), resulting from mutations in the BSCL2/seipin gene, exhibits the most severe lipodystrophic phenotype with loss of both metabolic and mechanical adipose depots. The majority of Seipin mutations cause C-terminal truncations, along with a handful of point mutations. Seipin localizes to the ER and is composed of a conserved region including a luminal loop and two transmembrane domains, plus cytosolic N- and C-termini. Animal models deficient in seipin recapitulate the human lipodystrophic phenotype. Cells isolated from seipin knockout mouse models also exhibit impaired adipogenesis. Mechanistically, seipin appears to function as a scaffolding protein to bring together interacting partners essential for lipid metabolism and LD (lipid droplet) formation during adipocyte development. Moreover, cell line and genetic studies indicate that seipin functions in a cell-autonomous manner. Here we will provide a brief overview of the genetic association of the CGLs, and focus on the current understanding of differential contributions of distinct seipin domains to lipid storage and adipogenesis. We will also discuss the roles of seipin-interacting partners, including lipin 1 and 14-3-3β, in mediating seipin-dependent regulation of cellular pathways such as actin cytoskeletal remodelling.
机译:CGL(先天性全身脂肪营养不良)是一种遗传性疾病,其特征是脂肪组织几乎完全丧失,而异位脂肪在其他器官(包括肝脏和肌肉)中的储存增加。在这四种CGL类型中,由BSCL2 / seipin基因突变导致的BSCL2(贝拉迪内利-塞普先天性脂肪营养不良类型2)表现出最严重的脂肪营养性表型,同时代谢和机械性脂肪库也消失了。大多数Seipin突变会导致C端截短,以及少数点突变。 Seipin定位于ER,由一个保守区域组成,该区域包括一个管腔环和两个跨膜结构域,以及胞质N端和C端。缺乏seipin的动物模型概括了人类的脂肪营养不良表型。从seipin基因敲除小鼠模型中分离的细胞也显示出脂肪形成受损。从机理上讲,seipin似乎起着脚手架蛋白的作用,将脂肪细胞发育过程中脂类代谢和LD(脂滴)形成所必需的相互作用伙伴聚集在一起。此外,细胞系和遗传研究表明,seipin以细胞自主方式发挥作用。在这里,我们将简要概述CGLs的遗传关联,并将重点放在当前对不同的seipin域对脂质存储和成脂作用的不同贡献的理解上。我们还将讨论脂蛋白相互作用伙伴(包括脂蛋白1和14-3-3β)在介导脂蛋白依赖性细胞途径(如肌动蛋白细胞骨架重塑)的调节中的作用。

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