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BTN1, the Saccharomyces cerevisiae homolog to the human Batten disease gene, is involved in phospholipid distribution

机译:BTN1是人类巴顿氏病基因的酿酒酵母同源物,与磷脂分布有关

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BTN1 , the yeast homolog to human CLN3 (which is defective in Batten disease), has been implicated in the regulation of vacuolar pH, potentially by modulating vacuolar-type H+-ATPase (V-ATPase) activity. However, we report that Btn1p and the V-ATPase complex do not physically interact, suggesting that any influence that Btn1p has on V-ATPase is indirect. Because membrane lipid environment plays a crucial role in the activity and function of membrane proteins, we investigated whether cells lacking BTN1 have altered membrane phospholipid content. Deletion of BTN1 ( btn1-Δ ) led to a decreased level of phosphatidylethanolamine (PtdEtn) in both mitochondrial and vacuolar membranes. In yeast there are two phosphatidylserine (PtdSer) decarboxylases, Psd1p and Psd2p, and these proteins are responsible for the synthesis of PtdEtn in mitochondria and Golgi-endosome, respectively. Deletion of both BTN1 and PSD1 ( btn1-Δ psd1-Δ ) led to a further decrease in levels of PtdEtn in ER membranes associated to mitochondria (MAMs), with a parallel increase in PtdSer. Fluorescent-labeled PtdSer (NBD-PtdSer) transport assays demonstrated that transport of NBD-PtdSer from the ER to both mitochondria and endosomes and/or vacuole is affected in btn1-Δ cells. Moreover, btn1-Δ affects the synthesis of PtdEtn by the Kennedy pathway and impairs the ability of psd1-Δ cells to restore PtdEtn to normal levels in mitochondria and vacuoles by ethanolamine addition. In summary, lack of Btn1p alters phospholipid levels and might play a role in regulating their subcellular distribution.
机译:BTN1是人类CLN3的酵母同源物(在巴滕病中有缺陷),可能与液泡pH的调节有关,可能是通过调节液泡型H + -ATPase(V-ATPase)的活性来实现的。但是,我们报告说Btn1p和V-ATPase复合物没有物理相互作用,这表明Btn1p对V-ATPase的任何影响都是间接的。因为膜脂质环境在膜蛋白的活性和功能中起着至关重要的作用,所以我们研究了缺少BTN1的细胞是否改变了膜磷脂的含量。 BTN1(btn1-Δ)的删除导致线粒体和液泡膜中磷脂酰乙醇胺(PtdEtn)的水平降低。在酵母中,有两种磷脂酰丝氨酸(PtdSer)脱羧酶Psd1p和Psd2p,这些蛋白质分别负责线粒体和高尔基体-内体中PtdEtn的合成。 BTN1和PSD1(btn1-Δpsd1-Δ)的缺失导致与线粒体(MAMs)相关的ER膜中PtdEtn的水平进一步降低,而PtdSer平行增加。荧光标记的PtdSer(NBD-PtdSer)转运分析表明,在btn1-Δ细胞中,NBD-PtdSer从ER转运到线粒体和内体和/或液泡均受到影响。此外,btn1-Δ通过肯尼迪途径影响PtdEtn的合成,并削弱psd1-Δ细胞通过添加乙醇胺使线粒体和液泡中的PtdEtn恢复至正常水平的能力。总之,缺乏Btn1p会改变磷脂水平,并可能在调节其亚细胞分布中发挥作用。

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