黑胃果蝇色素颗粒和突触囊泡生物形成对AP-3接头复合物的不同要求。

C Mullins, L M Hartnell, J S Bonifacino
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引用次数: 61

摘要

AP-3接头蛋白复合物与溶酶体相关细胞器的生物发生有关,如色素颗粒/黑素体和突触囊泡。在此,我们比较了AP-3在果蝇这些细胞器的生物发生中的相对重要性。我们报道果蝇色素突变体橙色和红宝石分别携带AP-3复合物的sigma3和β 3-适应蛋白亚基的遗传病变。电子显微镜显示,在这些AP-3突变体的眼睛中,电子致密色素颗粒的数量急剧减少。突变果蝇也显示出这些颗粒中的色素水平大大降低。相比之下,AP-3突变体和野生型果蝇的视网膜细胞电镜显示大量突触囊泡,而行为分析显示AP-3突变体幼虫的运动能力明显正常。总之,这些结果表明,果蝇AP-3对色素颗粒的生物发生至关重要,但显然不是体内突触囊泡主要群体形成所必需的。
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Distinct requirements for the AP-3 adaptor complex in pigment granule and synaptic vesicle biogenesis in Drosophila melanogaster.

The AP-3 adaptor protein complex has been implicated in the biogenesis of lysosome-related organelles, such as pigment granules/melanosomes, and synaptic vesicles. Here we compare the relative importance of AP-3 in the biogenesis of these organelles in Drosophila melanogaster. We report that the Drosophila pigmentation mutants orange and ruby carry genetic lesions in the sigma3 and beta3-adaptin subunits of the AP-3 complex, respectively. Electron microscopy reveals dramatic reductions in the numbers of electron-dense pigment granules in the eyes of these AP-3 mutants. Mutant flies also display greatly reduced levels of pigments housed in these granules. In contrast, electron microscopy of retinula cells reveals numerous synaptic vesicles in both AP-3 mutant and wild-type flies, while behavioral assays show apparently normal locomotor ability of AP-3 mutant larvae. Together, these results demonstrate that Drosophila AP-3 is critical for the biogenesis of pigment granules, but is apparently not essential for formation of a major population of synaptic vesicles in vivo.

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