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首页> 外文期刊>Journal of Cell Science >S. pombe btn1, the orthologue of the Batten disease gene CLN3, is required for vacuole protein sorting of Cpy1p and Golgi exit of Vps10p.
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S. pombe btn1, the orthologue of the Batten disease gene CLN3, is required for vacuole protein sorting of Cpy1p and Golgi exit of Vps10p.

机译:巴滕氏病基因CLN3的直向同源物S. pombe btn1是Cpy1p和Vps10p的高尔基体液泡蛋白分选所必需的。

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摘要

Batten disease is characterised by lysosomal dysfunction. The most common type of the disease is caused by mutations in the membrane protein CLN3, whose function is unknown. We show that the fission yeast orthologue Btn1p, previously implicated in vacuole function, is required for correct sorting of the vacuole hydrolase carboxypeptidase Y (Cpy1p). This is, in part, due to a defect in trafficking of Vps10p, the sorting receptor for Cpy1p, from the Golgi to the trans-Golgi network in btn1Delta cells. Our data also implicate btn1 in other Vps10-independent Cpy1-sorting pathways. Furthermore, btn1 affects the number, intracellular location and structure of Golgi compartments. We show that the prevacuole location of Btn1p is at the Golgi, because Btn1p colocalises predominantly with the Golgi marker Gms1p in compartments that are sensitive to Brefeldin A. Btn1p function might be linked to that of Vps34p, a phosphatidylinositol 3-kinase, because Btn1p acts as a multicopy suppressor of the severe Cpy1p vacuole protein-sorting defect of vps34Delta cells. Together, these results indicate an important role for Btn1p in the Golgi complex, which affects Golgi homeostasis and vacuole protein sorting. We propose a similar role for CLN3 in mammalian cells.
机译:巴滕病的特征是溶酶体功能障碍。该疾病最常见的类型是由膜蛋白CLN3的突变引起的,其功能未知。我们显示裂殖酵母直向同源物Btn1p,以前牵连在液泡功能,是正确的液泡水解酶羧肽酶Y(Cpy1p)的排序。部分原因是由于btn1Delta细胞中Cpy1p的分选受体Vps10p从高尔基运到反高尔基网络的运输缺陷。我们的数据还暗示btn1参与其他不依赖Vps10的Cpy1排序途径。此外,btn1影响高尔基区室的数量,细胞内位置和结构。我们显示Btn1p的前空泡位置位于高尔基体,因为Btn1p主要与高尔基体标记Gms1p共定位于对布雷菲德菌素A敏感的区室。Btn1p的功能可能与磷脂酰肌醇3激酶Vps34p的功能相关,因为Btn1p起作用作为vps34Delta细胞严重Cpy1p液泡蛋白分选缺陷的多拷贝抑制剂。总之,这些结果表明Btn1p在高尔基体中起着重要作用,这会影响高尔基体稳态和液泡蛋白分选。我们提出在哺乳动物细胞中CLN3的类似作用。

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