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酵母转化应激,连同磷脂酸磷酸酶Pah1的缺失,导致Ty1逆转座子插入INO4基因。

Yeast transformation stress, together with loss of Pah1, phosphatidic acid phosphatase, leads to Ty1 retrotransposon insertion into the INO4 gene.

作者信息

Kudo Shinnosuke, Shiino Hiroya, Furuta Shiina, Tamura Yasushi

机构信息

Faculty of Science, Yamagata University, Yamagata, Japan.

出版信息

FASEB J. 2020 Mar;34(3):4749-4763. doi: 10.1096/fj.201901811RR. Epub 2020 Feb 10.

Abstract

Most phospholipids are synthesized via modification reactions of a simple phospholipid phosphatidic acid (PA). PA and its modified phospholipids travel between organelle membranes, for example, the endoplasmic reticulum (ER) and mitochondrial inner membrane, to be converted to the other phospholipids. To gain insight into mechanisms of the phospholipid biosynthetic pathways, we searched for factors whose loss affects the phospholipid synthesis using an in vitro phospholipid transport assay. Among the various factors that were tested, we noticed that a lack of Pah1, which is a phosphatidic acid phosphatase, led to severe defects in phospholipid synthesis, which was not rescued by re-expression of wild-type Pah1. These results indicated other mutations in addition to the deletion of Pah1. Interestingly, we found that stress conditions associated with the yeast transformation process triggered a disruption of the INO4 gene by insertion of the Ty1 retrotransposon in pah1∆ strains. Additionally, we noticed that loss of the diacylglycerol kinase Dgk1, which has an opposing function to Pah1, suppressed the insertional mutation of INO4. These findings suggest that normal Pah1 function is critical for the suppression of insertional mutations by retrotransposon elements.

摘要

大多数磷脂是通过对一种简单磷脂磷脂酸(PA)进行修饰反应合成的。PA及其修饰的磷脂在细胞器膜之间穿梭,例如内质网(ER)和线粒体内膜,进而转化为其他磷脂。为深入了解磷脂生物合成途径的机制,我们利用体外磷脂转运试验寻找缺失后会影响磷脂合成的因子。在测试的各种因子中,我们注意到磷脂酸磷酸酶Pah1的缺失会导致磷脂合成出现严重缺陷,野生型Pah1的重新表达无法挽救这种缺陷。这些结果表明除了Pah1缺失外还存在其他突变。有趣的是,我们发现与酵母转化过程相关的应激条件会通过在pah1∆菌株中插入Ty1逆转座子引发INO4基因的破坏。此外,我们注意到与Pah1功能相反的二酰基甘油激酶Dgk1的缺失抑制了INO4的插入突变。这些发现表明正常的Pah1功能对于逆转座子元件抑制插入突变至关重要。

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