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线粒体含锰超氧化物歧化酶对白色念珠菌各种应激的保护作用。

Protective roles of mitochondrial manganese-containing superoxide dismutase against various stresses in Candida albicans.

作者信息

Hwang Cheol-Sang, Baek Yong-Un, Yim Hyung-Soon, Kang Sa-Ouk

机构信息

Laboratory of Biophysics, School of Biological Sciences, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

Yeast. 2003 Aug;20(11):929-41. doi: 10.1002/yea.1004.

DOI:10.1002/yea.1004
PMID:12898709
Abstract

Candida albicans contains copper- and zinc-containing superoxide dismutase but also two manganese-containing superoxide dismutases (MnSODs), one in the cytosol and the other in the mitochondria. Among these, the SOD2 gene encoding mitochondrial MnSOD was disrupted and overexpressed to investigate its roles in C. albicans. The null mutant lacking mitochondrial MnSOD was more sensitive than wild-type cells to various stresses, such as redox-cycling agents, heating, ethanol, high concentration of sodium or potassium and 99.9% O2. Interestingly, the sod2/sod2 mutant was rather more resistant to lithium and diamide than the wild-type, whereas overexpression of SOD2 increased susceptibility of C. albicans to these compounds. The inverse effect of mitochondrial MnSOD on lithium toxicity was relieved when the sod2/sod2 and SOD2-overexpressing cells were grown on the synthetic dextrose medium containing sulphur compounds such as methionine, cysteine, glutathione or sulphite, indicating that mitochondrial MnSOD may affect lithium toxicity through sulphur metabolism. Moreover, disruption or overexpression of SOD2 increased or decreased glutathione reductase activity and cyanide-resistant respiration by alternative oxidase, respectively. Taken together, these findings suggest that mitochondrial MnSOD is important for stress responses, lithium toxicity and cyanide-resistant respiration of C. albicans.

摘要

白色念珠菌含有含铜和含锌的超氧化物歧化酶,但也含有两种含锰的超氧化物歧化酶(MnSODs),一种存在于细胞质中,另一种存在于线粒体中。其中,编码线粒体MnSOD的SOD2基因被破坏并过表达,以研究其在白色念珠菌中的作用。缺乏线粒体MnSOD的无效突变体比野生型细胞对各种应激更敏感,如氧化还原循环剂、加热、乙醇、高浓度的钠或钾以及99.9%的氧气。有趣的是,sod2/sod2突变体比野生型对锂和二酰胺具有更强的抗性,而SOD2的过表达增加了白色念珠菌对这些化合物的敏感性。当sod2/sod2和SOD2过表达细胞在含有硫化合物(如蛋氨酸、半胱氨酸、谷胱甘肽或亚硫酸盐)的合成葡萄糖培养基上生长时,线粒体MnSOD对锂毒性的相反作用得到缓解,这表明线粒体MnSOD可能通过硫代谢影响锂毒性。此外,SOD2的破坏或过表达分别增加或降低了谷胱甘肽还原酶活性和通过交替氧化酶的抗氰呼吸。综上所述,这些发现表明线粒体MnSOD对白色念珠菌的应激反应、锂毒性和抗氰呼吸很重要。

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