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Molecular characterization of seipin and its mutants: implications for seipin in triacylglycerol synthesis

机译:seipin及其突变体的分子表征:seipin在三酰基甘油合成中的意义

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摘要

The human lipodystrophy gene product Berardinelli-Seip congenital lipodystrophy 2/seipin has been implicated in adipocyte differentiation, lipid droplet (LD) formation, and motor neuron development. However, the molecular function of seipin and its disease-causing mutants remains to be elucidated. Here, we characterize seipin and its mis-sense mutants: N88S/S90L (both linked to motoneuron disorders) and A212P (linked to lipodystrophy) in cultured mammalian cells. Knocking down seipin significantly increases oleate incorporation into triacylglycerol (TAG) and the steady state level of TAG, and induces the proliferation and clustering of small LDs. By contrast, overexpression of seipin reduces TAG synthesis, leading to decreased formation of LDs. Expression of the A212P mutant, however, had little effect on LD biogenesis. Surprisingly, expression of N88S or S90L causes the formation of many small LDs reminiscent of seipin deficient cells. This dominant-negative effect may be due to the N88S/S90L-induced formation of inclusions where wild-type seipin can be trapped. Importantly, coexpression of wild-type seipin and the N88S or S90L mutant can significantly reduce the formation of inclusions. Finally, we demonstrate that seipin can interact with itself and its mutant forms. Our results provide important insights into the biochemical characteristics of seipin and its mis-sense mutants, and suggest that seipin may function to inhibit lipogenesis.
机译:人类脂肪营养不良基因产物Berardinelli-Seip先天性脂肪营养不良2 / seipin与脂肪细胞分化,脂质滴(LD)形成和运动神经元发育有关。然而,seipin及其致病突变体的分子功能仍有待阐明。在这里,我们表征了培养的哺乳动物细胞中seipin及其错义突变体:N88S / S90L(均与运动神经元疾病有关)和A212P(与脂肪营养不良有关)。降低seipin可以显着增加油酸酯掺入三酰基甘油(TAG)和TAG的稳态水平,并诱导小LD的增殖和聚集。相比之下,seipin的过表达减少了TAG的合成,从而导致LD的形成减少。但是,A212P突变体的表达对LD生物发生的影响很小。出乎意料的是,N88S或S90L的表达导致许多小的LD的形成,让人联想到脂蛋白缺乏的细胞。这种显性负效应可能是由于N88S / S90L诱导的内含物形成所致,其中可以捕获野生型脂蛋白。重要的是,野生型seipin与N88S或S90L突变体的共表达可以显着减少内含物的形成。最后,我们证明seipin可以与其自身及其突变体形式相互作用。我们的结果为seipin及其错义突变体的生化特征提供了重要的见识,并表明seipin可能具有抑制脂肪生成的作用。

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