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Exceptional stability of a perilipin on lipid droplets depends on its polar residues suggesting multimeric assembly

机译:Perilipin对脂质液滴的卓越稳定性取决于其极性残留物提出多聚体组件

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摘要

Numerous proteins target lipid droplets (LDs) through amphipathic helices (AHs). It is generally assumed that AHs insert bulky hydrophobic residues in packing defects at the LD surface. However, this model does not explain the targeting of perilipins, the most abundant and specific amphipathic proteins of LDs, which are weakly hydrophobic. A striking example is Plin4, whose gigantic and repetitive AH lacks bulky hydrophobic residues. Using a range of complementary approaches, we show that Plin4 forms a remarkably immobile and stable protein layer at the surface of cellular or in vitro generated oil droplets, and decreases LD size. Plin4 AH stability on LDs is exquisitely sensitive to the nature and distribution of its polar residues. These results suggest that Plin4 forms stable arrangements of adjacent AHs via polar/electrostatic interactions, reminiscent of the organization of apolipoproteins in lipoprotein particles, thus pointing to a general mechanism of AH stabilization via lateral interactions.
机译:许多蛋白质通过两亲螺旋(AHS)靶向脂液滴(LDS)。通常假设AHS在LD表面的填充缺陷中插入庞大的疏水残留物。然而,该模型不解释哌利普的靶向,LDS的最丰富和特异性的两亲性蛋白质,这是弱疏水的。一个引人注目的例子是plin4,其巨大和重复αh缺乏庞大的疏水性残留物。使用一系列互补方法,我们表明PLIN4在细胞或体外产生的油滴的表面处形成显着的不动且稳定的蛋白质层,并降低LD尺寸。 PLIN4 AH稳定性对LDS的稳定性对其极性残留物的性质和分布进行了精致敏感。这些结果表明,PLIN4通过极性/静电相互作用形成相邻AHS的稳定布置,使脂蛋白颗粒中的载脂蛋白组织联系,从而指向AH稳定化通过横向相互作用的一般机制。

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