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线粒体阴离子磷脂的缺乏会导致电子传递链蛋白质组分的翻译受到抑制。一种用于研究线粒体中阴离子磷脂功能的酵母遗传模型系统。

Lack of mitochondrial anionic phospholipids causes an inhibition of translation of protein components of the electron transport chain. A yeast genetic model system for the study of anionic phospholipid function in mitochondria.

作者信息

Ostrander D B, Zhang M, Mileykovskaya E, Rho M, Dowhan W

机构信息

Department of Biochemistry and Molecular Biology, University of Texas Medical School, Houston, TX 77225, USA.

出版信息

J Biol Chem. 2001 Jul 6;276(27):25262-72. doi: 10.1074/jbc.M103689200. Epub 2001 May 2.

Abstract

Reduction of mitochondrial cardiolipin (CL) levels has been postulated to compromise directly the function of several essential enzymes and processes of the mitochondria. There is limited genetic evidence for the critical roles with which CL and its precursor phosphatidylglycerol (PG) have been associated. A null allele of the PGS1 gene from Saccharomyces cerevisiae, which encodes the enzyme responsible for the synthesis of the CL precursor PG phosphate, was created in a yeast strain in which PGS1 expression is exogenously regulated by doxycycline. The addition of increasing concentrations of doxycycline to the growth medium causes a proportional decrease to undetectable levels of PGS1 transcript, PG phosphate synthase activity, and PG plus CL. The doubling time of this strain with increasing doxycycline increases to senescence in non-fermentable carbon sources or at high temperatures, conditions that do not support growth of the pgs1Delta strain. Doxycycline addition also causes mitochondrial abnormalities as observed by fluorescence microscopy. Products of four mitochondrial encoded genes (COX1, COX2, COX3, and COB) and one nuclear encoded gene (COX4) associated with the mitochondrial inner membrane are not present when PGS1 expression is fully repressed. No translation of these proteins can be detected in cells lacking the PGS1 gene product, although transcription and splicing appear unaffected. Protein import of other nuclear encoded proteins remains unaffected. The remaining proteins encoded by mitochondrial DNA are expressed and translated normally. Thus, the molecular basis for the lack of mitochondrial function in pgs1Delta cells is the failure to translate gene products essential to the electron transport chain.

摘要

线粒体心磷脂(CL)水平的降低被认为会直接损害线粒体几种关键酶的功能以及线粒体的一些重要过程。关于CL及其前体磷脂酰甘油(PG)所涉及的关键作用,遗传证据有限。在酿酒酵母中,通过强力霉素对外源调节PGS1表达的酵母菌株中,构建了PGS1基因的无效等位基因,该基因编码负责合成CL前体磷酸PG的酶。向生长培养基中添加浓度不断增加的强力霉素会导致PGS1转录本、磷酸PG合酶活性以及PG加CL的水平成比例下降至检测不到的水平。随着强力霉素浓度增加,该菌株的倍增时间延长,在不可发酵碳源中或高温下会衰老,而这些条件下pgs1Delta菌株无法生长。添加强力霉素还会导致荧光显微镜观察到的线粒体异常。当PGS1表达被完全抑制时,与线粒体内膜相关的四个线粒体编码基因(COX1、COX2、COX3和COB)和一个核编码基因(COX4)的产物不存在。在缺乏PGS1基因产物的细胞中,虽然转录和剪接似乎未受影响,但无法检测到这些蛋白质的翻译。其他核编码蛋白质的蛋白质导入不受影响。线粒体DNA编码的其余蛋白质正常表达和翻译。因此,pgs1Delta细胞中线粒体功能缺失的分子基础是未能翻译对电子传递链至关重要的基因产物。

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