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白色念珠菌的磷脂酰肌醇3激酶VPS34参与丝状生长、天冬氨酸蛋白酶分泌及细胞内解毒过程。

Phosphatidylinositol 3-kinase VPS34 of Candida albicans is involved in filamentous growth, secretion of aspartic proteases, and intracellular detoxification.

作者信息

Kitanovic Ana, Nguyen Monika, Vogl Georgia, Hartmann Andrea, Günther Juliane, Würzner Reinhard, Künkel Waldemar, Wölfl Stefan, Eck Raimund

机构信息

Clinic for Internal Medicine II, Molecular Biology Laboratory, Friedrich-Schiller University Jena, Erlanger Allee 101, D-07747 Jena, Germany.

出版信息

FEMS Yeast Res. 2005 Feb;5(4-5):431-9. doi: 10.1016/j.femsyr.2004.11.005.

Abstract

The phosphatidylinositol (PI) 3-kinase Vps34p of Candida albicans influences vesicular intracellular transport, filamentous growth and virulence. To get a clearer understanding how these phenomena are connected, we analysed hyphal growth in a matrix under microaerophilic conditions at low temperature, the detoxification of metal ions and antifungal drugs, the secretion of aspartic proteinases (Saps), as well as expression of adhesion-associated proteins of the C. albicans vps34 null mutant strain. The hyphal growth in a matrix, which is repressed in the wild-type strain by Efg1p, was derepressed in the mutant. CZF1, which encodes an activator of hyphal growth in a matrix, was up-regulated in the mutant. In addition, CZF1 expression was pH-dependent in the wild-type. Expression of EFG1 was not changed. Examination of Saps secretion showed a reduction in the vps34 null mutant. Determination of sensitivity against metal ions and antimycotic drugs revealed defects in detoxification. Expression studies indicated that the vps34 mutant reacts to the phenotypical defects with an up-regulation of genes involved in these processes, including the aspartyl proteinases SAP2 and SAP9, adhesion proteins ALS1 and HWP1, and the ABC transporters CDR1 and HST6. We also found an increased expression of the PI 4-kinase LSB6 indicating a complex feed-back mechanism for the compensation of the multiple defects arising from the lack of the PI3-kinase VPS34.

摘要

白色念珠菌的磷脂酰肌醇(PI)3-激酶Vps34p影响细胞内囊泡运输、丝状生长和毒力。为了更清楚地了解这些现象之间的联系,我们分析了在低温微需氧条件下基质中的菌丝生长、金属离子和抗真菌药物的解毒作用、天冬氨酸蛋白酶(Saps)的分泌,以及白色念珠菌vps34缺失突变株黏附相关蛋白的表达。在野生型菌株中受Efg1p抑制的基质中的菌丝生长在突变体中被解除抑制。编码基质中菌丝生长激活剂的CZF1在突变体中上调。此外,在野生型中CZF1表达依赖于pH。EFG1的表达没有变化。对Saps分泌的检测显示vps34缺失突变体有所减少。对金属离子和抗真菌药物敏感性的测定揭示了解毒缺陷。表达研究表明,vps34突变体通过上调参与这些过程的基因来应对表型缺陷,这些基因包括天冬氨酸蛋白酶SAP2和SAP9、黏附蛋白ALS1和HWP1,以及ABC转运蛋白CDR1和HST6。我们还发现PI 4-激酶LSB6的表达增加,这表明存在一种复杂的反馈机制,用于补偿因缺乏PI3-激酶VPS34而产生的多种缺陷。

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