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首页> 外文期刊>The Journal of Experimental Biology >Biogenesis of zinc storage granules in Drosophila melanogaster
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Biogenesis of zinc storage granules in Drosophila melanogaster

机译:在果蝇黑素礁锌贮藏颗粒的生物发生

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Membrane transporters and sequestration mechanisms concentrate metal ions differentially into discrete subcellular microenvironments for use in protein cofactors, signalling, storage or excretion. Here we identify zinc storage granules as the insect's major zinc reservoir in principal Malpighian tubule epithelial cells of Drosophila melanogaster. The concerted action of Adaptor Protein-3, Rab32, HOPS and BLOC complexes as well as of the white-scarlet (ABCG2like) and ZnT35C (ZnT2/ZnT3/ZnT8-like) transporters is required for zinc storage granule biogenesis. Due to lysosome-related organelle defects caused by mutations in the homologous human genes, patients with Hermansky-Pudlak syndrome may lack zinc granules in beta pancreatic cells, intestinal paneth cells and presynaptic vesicles of hippocampal mossy fibers.
机译:膜转运蛋白和螯合机制将金属离子差异化成离散的亚细胞微环境,用于蛋白质辅因子,信号传导,储存或排泄。 在这里,我们将锌储存颗粒识别为昆虫的主要锌储层,在果蝇的主要锌水管上皮细胞中。 锌储存颗粒生物发生需要,适配器蛋白-3,Rab32,啤酒花和Bloc复合物以及白猩红(ABCG2Like)和ZnT35C(ZnT2 / ZnT3 / ZnT8样)转运蛋白的齐吻作用。 由于与同源人类基因突变引起的溶酶体相关的细胞器缺陷,Hermansky-Pudlak综合征患者可能在β胰腺细胞,肠道细胞和海马苔藓纤维的突触囊泡中缺含锌颗粒。

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