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Genetic Studies of Spectrin in the Larval Fat Body of Drosophila melanogaster: Evidence for a Novel Lipid Uptake Apparatus

机译:果蝇幼虫脂肪体中血影蛋白的遗传研究:新型脂质摄取装置的证据。

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摘要

Spectrin cytoskeleton defects produce a host of phenotypes affecting the plasma membrane, cell polarity, and secretory membrane traffic. However, many of the underlying molecular mechanisms remain unexplained by prevailing models. Here we used the larval fat body of Drosophila melanogaster as a genetic model system to further elucidate mechanisms of αβ-spectrin function. The results provide unexpected new insights into spectrin function as well as mechanisms of dietary fat uptake and storage. We show that loss of α- or β-spectrin in the fat body eliminated a population of small cortical lipid droplets and altered plasma membrane architecture, but did not affect viability of the organism. We present a novel model in which αβ-spectrin directly couples lipid uptake at the plasma membrane to lipid droplet growth in the cytoplasm. In contrast, strong overexpression of β-spectrin caused fat body atrophy and larval lethality. Overexpression of β-spectrin also perturbed transport of dietary fat from the midgut to the fat body. This hypermorphic phenotype appears to be the result of blocking secretion of the lipid carrier lipophorin from fat cells. However, this midgut phenotype was never seen with spectrin loss of function, suggesting that spectrin is not normally required for lipophorin secretion or function. The β-spectrin hypermorphic phenotype was ameliorated by co-overexpression of α-spectrin. Based on the overexpression results here, we propose that β-spectrin family members may be prone to hypermorphic effects (including effects on secretion) if their activity is not properly regulated.
机译:血影蛋白细胞骨架缺陷产生许多影响质膜,细胞极性和分泌膜运输的表型。但是,目前的模型尚无法解释许多潜在的分子机制。在这里,我们使用果蝇果蝇的幼虫脂肪体作为遗传模型系统,以进一步阐明αβ-血影蛋白功能的机制。该结果为血影蛋白功能以及饮食中脂肪的摄取和储存机理提供了意想不到的新见解。我们表明,脂肪体中α-或β-血影蛋白的丢失消除了小皮质脂质小滴的群体并改变了质膜的结构,但并未影响生物体的生存能力。我们提出了一种新颖的模型,其中αβ-血影蛋白直接将质膜上的脂质摄取耦合到细胞质中的脂质液滴生长。相反,强烈的β-血影蛋白过度表达会导致脂肪萎缩和幼虫致死率。 β-血影蛋白的过度表达也扰乱了饮食脂肪从中肠向脂肪体的运输。这种多态性表型似乎是阻断脂质细胞脂蛋白从脂肪细胞分泌的结果。但是,这种中肠表型从未见过血影蛋白功能丧失,这表明血影蛋白通常不是脂蛋白的分泌或功能所必需的。通过共表达α-血影蛋白可以改善β-血影蛋白的超型表型。基于此处的过表达结果,我们建议,如果未适当调节β-血影蛋白家族成员的活性,则它们可能易于出现高形态效应(包括对分泌的影响)。

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