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白色念珠菌的细胞内天冬氨酸蛋白酶Apr1p在氮限制条件下的形态转变中是必需的,但在巨噬细胞杀伤中并非必需。

Intracellular aspartic proteinase Apr1p of Candida albicans is required for morphological transition under nitrogen-limited conditions but not for macrophage killing.

作者信息

Bauerová Václava, Hájek Miroslav, Pichová Iva, Hrušková-Heidingsfeldová Olga

机构信息

Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, v. v. i., Flemingovo namesti 2, 166 10, Prague 6, Czech Republic.

出版信息

Folia Microbiol (Praha). 2014 Nov;59(6):485-93. doi: 10.1007/s12223-014-0324-4. Epub 2014 Jun 1.

Abstract

Vacuolar hydrolases have been thoroughly characterized in Saccharomyces cerevisiae, but their homologues in the fungal pathogen Candida albicans have received less attention. The genes APR1 and CPY1 of C. albicans encode putative vacuolar aspartic proteinase and serine carboxypeptidase, respectively. We examined properties of apr1Δ and cpy1Δ mutants, showing that Cpy1p molecular species detected in cell lysates of apr1Δ and its parental strain did not differ in molar mass. Processing of Cpy1p precursor is apparently independent of Apr1p. This is in contrast to S. cerevisiae, where vacuolar aspartic proteinase Pep4p is known to participate in the activation of other vacuolar hydrolases including serine carboxypeptidase. We also found that both apr1Δ and cpy1Δ strains are able to form hyphae in nutrient-rich filamentation media. However, proline as a sole nitrogen source induced filamentation only in cpy1Δ and its parental strain, but not in apr1Δ. This indicates the importance of Apr1p for the morphological transition under nitrogen-limited conditions. Despite that, the ability of apr1Δ to kill murine macrophages was not reduced under the conditions tested.

摘要

液泡水解酶已在酿酒酵母中得到充分表征,但其在真菌病原体白色念珠菌中的同源物受到的关注较少。白色念珠菌的APR1和CPY1基因分别编码假定的液泡天冬氨酸蛋白酶和丝氨酸羧肽酶。我们研究了apr1Δ和cpy1Δ突变体的特性,结果表明在apr1Δ及其亲本菌株的细胞裂解物中检测到的Cpy1p分子种类在摩尔质量上没有差异。Cpy1p前体的加工显然不依赖于Apr1p。这与酿酒酵母不同,在酿酒酵母中,已知液泡天冬氨酸蛋白酶Pep4p参与包括丝氨酸羧肽酶在内的其他液泡水解酶的激活。我们还发现,apr1Δ和cpy1Δ菌株都能够在营养丰富的丝状化培养基中形成菌丝。然而,脯氨酸作为唯一氮源仅在cpy1Δ及其亲本菌株中诱导丝状化,而在apr1Δ中则不诱导。这表明Apr1p在氮限制条件下形态转变中的重要性。尽管如此,在测试条件下,apr1Δ杀死小鼠巨噬细胞的能力并未降低。

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