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首页> 外文期刊>Human Molecular Genetics >Genetic modifiers of abnormal organelle biogenesis in a Drosophila model of BLOC-1 deficiency.
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Genetic modifiers of abnormal organelle biogenesis in a Drosophila model of BLOC-1 deficiency.

机译:果蝇BLOC-1缺乏模型中细胞器生物发生异常的遗传修饰因子。

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Biogenesis of lysosome-related organelles complex 1 (BLOC-1) is a protein complex formed by the products of eight distinct genes. Loss-of-function mutations in two of these genes, DTNBP1 and BLOC1S3, cause Hermansky-Pudlak syndrome, a human disorder characterized by defective biogenesis of lysosome-related organelles. In addition, haplotype variants within the same two genes have been postulated to increase the risk of developing schizophrenia. However, the molecular function of BLOC-1 remains unknown. Here, we have generated a fly model of BLOC-1 deficiency. Mutant flies lacking the conserved Blos1 subunit displayed eye pigmentation defects due to abnormal pigment granules, which are lysosome-related organelles, as well as abnormal glutamatergic transmission and behavior. Epistatic analyses revealed that BLOC-1 function in pigment granule biogenesis requires the activities of BLOC-2 and a putative Rab guanine-nucleotide-exchange factor named Claret. The eye pigmentation phenotype was modified by misexpression of proteins involved in intracellular protein trafficking; in particular, the phenotype was partially ameliorated by Rab11 and strongly enhanced by the clathrin-disassembly factor, Auxilin. These observations validate Drosophila melanogaster as a powerful model for the study of BLOC-1 function and its interactions with modifier genes.
机译:溶酶体相关细胞器复合物1(BLOC-1)的生物发生是由八个不同基因的产物形成的蛋白质复合物。这些基因中的两个DTNBP1和BLOC1S3功能丧失突变会导致Hermansky-Pudlak综合征,这是一种人类疾病,其特征在于溶酶体相关细胞器的生物发生缺陷。另外,已经推测在相同两个基因内的单倍型变体会增加发生精神分裂症的风险。但是,BLOC-1的分子功能仍然未知。在这里,我们生成了BLOC-1缺乏症的蝇模型。缺乏保守的Blos1亚基的突变果蝇由于异常的色素颗粒(与溶酶体相关的细胞器)以及异常的谷氨酸能传递和行为而表现出眼睛色素沉着缺陷。上位性分析表明,BLOC-1在色素颗粒生物发生中的功能需要BLOC-2和假定的Rab鸟嘌呤-核苷酸交换因子Claret的活性。眼睛色素沉着的表型是通过与细胞内蛋白质运输有关的蛋白质的错误表达而改变的。特别是,Rab11改善了表型,而网格蛋白分解因子Auxilin则大大增强了该表型。这些观察结果证明果蝇是研究BLOC-1功能及其与修饰基因相互作用的强大模型。

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