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白色念珠菌NADH脱氢酶复合体I参与丝状化过程。

Involvement of Candida albicans NADH dehydrogenase complex I in filamentation.

作者信息

McDonough Justin A, Bhattacherjee Vasker, Sadlon Tania, Hostetter Margaret K

机构信息

Department of Pediatrics and Center for Microbial Pathogenesis, Yale University School of Medicine, 464 Congress Avenue, New Haven, CT 06519, USA.

出版信息

Fungal Genet Biol. 2002 Jul;36(2):117-27. doi: 10.1016/S1087-1845(02)00007-5.

Abstract

The gene encoding the 51-kDa subunit of nicotinamide adenine dinucleotide (NADH) dehydrogenase complex I, a principal component of the mitochondrial electron transport chain, was cloned in Candida tropicalis. The homolog in C. albicans, CaNDH51, was identified, and each allele was successively disrupted by PCR-mediated gene disruption. Wild type, heterozygote, reintegrant, and homozygous null mutants grew as blastoconidia in rich medium containing 3% glucose, but the homozygous null mutant failed to grow in ethanol or acetate. When glucose concentration was varied from 1 mM (0.018%) to 200 mM (3.6%) in a basal salts medium, all strains grew equally well at all glucose concentrations; the wild-type strain, the heterozygote, and the reintegrant exhibited abundant germ tubes, pseudohyphae, and hyphae. In contrast, the ndh51/ndh51 strain failed to display any type of filamentous growth, even in glucose concentrations as low as 1 mM. These results suggest a previously unexplored relationship between mitochondrial electron transport and morphogenesis.

摘要

编码烟酰胺腺嘌呤二核苷酸(NADH)脱氢酶复合体I(线粒体电子传递链的主要成分)51-kDa亚基的基因在热带假丝酵母中被克隆。白色念珠菌中的同源物CaNDH51被鉴定出来,并且每个等位基因通过PCR介导的基因破坏被相继破坏。野生型、杂合子、整合体和纯合缺失突变体在含有3%葡萄糖的丰富培养基中以芽生孢子的形式生长,但纯合缺失突变体在乙醇或乙酸盐中无法生长。当基础盐培养基中的葡萄糖浓度从1 mM(0.018%)变化到200 mM(3.6%)时,所有菌株在所有葡萄糖浓度下生长情况相同;野生型菌株、杂合子和整合体表现出丰富的芽管、假菌丝和菌丝。相比之下,ndh51/ndh51菌株即使在低至1 mM的葡萄糖浓度下也未能表现出任何类型的丝状生长。这些结果表明线粒体电子传递与形态发生之间存在以前未被探索的关系。

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