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用卡氏肺孢子虫sod2基因对锰依赖性超氧化物歧化酶缺陷型酵母菌株进行互补。

Complementation of a manganese-dependent superoxide dismutase-deficient yeast strain with Pneumocystis carinii sod2 gene.

作者信息

Khalife Sara, Aliouat El Moukhtar, Gantois Nausicaa, Jakobczyk Hélène, Demay François, Chabé Magali, Pottier Muriel, Dabboussi Fouad, Hamze Monzer, Dei-Cas Eduardo, Standaert-Vitse Annie, Aliouat-Denis Cécile-Marie

机构信息

Centre d'Infection et d'Immunité de Lille, INSERM U1019, CNRS UMR 8204, Univ Lille Nord de France, Institut Pasteur de Lille, Univ Lille2, Lille F-59019, France; Laboratoire de Microbiologie Santé et Environnement, Centre AZM pour la Recherche en Biotechnologie et ses Applications, Université Libanaise, Tripoli, Liban.

Centre d'Infection et d'Immunité de Lille, INSERM U1019, CNRS UMR 8204, Univ Lille Nord de France, Institut Pasteur de Lille, Univ Lille2, Lille F-59019, France; Laboratoire de Parasitologie, Faculté de Pharmacie, Univ Lille 2, Lille F-59006, France.

出版信息

Fungal Biol. 2014 Nov;118(11):885-95. doi: 10.1016/j.funbio.2014.07.007. Epub 2014 Aug 11.

Abstract

Manganese-dependent superoxide dismutase (MnSOD) is one of the key enzymes involved in the cellular defense against oxidative stress. Previously, the Pneumocystis carinii sod2 gene (Pcsod2) was isolated and characterized. Based on protein sequence comparison, Pcsod2 was suggested to encode a putative MnSOD protein likely to be targeted into the mitochondrion. In this work, the Pcsod2 was cloned and expressed as a recombinant protein in EG110 Saccharomyces cerevisiae strain lacking the MnSOD-coding gene (Scsod2) in order to investigate the function and subcellular localization of P. carinii MnSOD (PcMnSOD). The Pcsod2 gene was amplified by PCR and cloned into the pYES2.1/V5-His-TOPO(®) expression vector. The recombinant construct was then transformed into EG110 strain. Once its expression had been induced, PcMnSOD was able to complement the growth defect of EG110 yeast cells that had been exposed to the redox-cycling compound menadione. N-term sequencing of the PcMnSOD protein allowed identifying the cleavage site of a mitochondrial targeting peptide. Immune-colocalization of PcMnSOD and yeast CoxIV further confirmed the mitochondrial localization of the PcMnSOD. Heterologous expression of PcMnSOD in yeast indicates that Pcsod2 encodes an active MnSOD, targeted to the yeast mitochondrion that allows the yeast cells to grow in the presence of reactive oxygen species (ROS).

摘要

锰依赖超氧化物歧化酶(MnSOD)是细胞抵御氧化应激的关键酶之一。此前,已分离并鉴定了卡氏肺孢子虫sod2基因(Pcsod2)。基于蛋白质序列比较,推测Pcsod2编码一种可能定位于线粒体的假定MnSOD蛋白。在本研究中,克隆了Pcsod2,并在缺乏MnSOD编码基因(Scsod2)的EG110酿酒酵母菌株中表达为重组蛋白,以研究卡氏肺孢子虫MnSOD(PcMnSOD)的功能和亚细胞定位。通过PCR扩增Pcsod2基因,并将其克隆到pYES2.1/V5-His-TOPO(®)表达载体中。然后将重组构建体转化到EG110菌株中。诱导其表达后,PcMnSOD能够弥补暴露于氧化还原循环化合物甲萘醌的EG110酵母细胞的生长缺陷。对PcMnSOD蛋白进行N端测序可确定线粒体靶向肽的切割位点。PcMnSOD与酵母细胞色素c氧化酶亚基IV(CoxIV)的免疫共定位进一步证实了PcMnSOD的线粒体定位。PcMnSOD在酵母中的异源表达表明,Pcsod2编码一种活性MnSOD,定位于酵母线粒体,使酵母细胞能够在活性氧(ROS)存在的情况下生长。

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