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编码蛋白质 O-甘露糖基转移酶的 PMT2 在人类病原体新型隐球菌中的功能表征。

Functional characterization of PMT2, encoding a protein-O-mannosyltransferase, in the human pathogen Cryptococcus neoformans.

作者信息

Shimizu Kiminori, Imanishi Yumi, Toh-e Akio, Uno Jun, Chibana Hiroji, Hull Christina M, Kawamoto Susumu

机构信息

Medical Mycology Research Center, Chiba University, Inohana 1-8-1, Chuo-ku, Chiba 260-8673, Japan.

Medical Mycology Research Center, Chiba University, Inohana 1-8-1, Chuo-ku, Chiba 260-8673, Japan; Department of Applied Material and Life Science, College of Engineering, Kanto Gakuin University, Mutsuura-higashi 1-50-1, Kanazawa-ku, Yokohama 236-8501, Japan.

出版信息

Fungal Genet Biol. 2014 Aug;69:13-22. doi: 10.1016/j.fgb.2014.05.007. Epub 2014 Jun 2.

Abstract

Diazobenzoic acid B (DBB), also known as diazonium blue B or fast blue B, can be used to distinguish basidiomycetous yeasts from ascomycetes. This chemical has long been used for the taxonomic study of yeast species at the phylum level, but the mechanism underlying the DBB staining remains unknown. To identify molecular targets of DBB staining, we isolated Agrobacterium tumefaciens-mediated insertional mutants of Cryptococcus neoformans, a basidiomycetous pathogenic yeast, which were negative to DBB staining. In one of these mutants, we found that the PMT2 gene, encoding a protein-O-mannosyltransferase, was interrupted by a T-DNA insertion. A complete gene knockout of the PMT2 gene revealed that the gene was responsible for DBB staining in C. neoformans, suggesting that one of the targets of Pmt2-mediated glycosylation is responsible for interacting with DBB. We also determined that Cryptococcus gattii, a close relative of C. neoformans, was not stained by DBB when the PMT2 gene was deleted. Our finding suggests that the protein-O-mannosylation by the PMT2 gene product is required for DBB staining in Cryptococcus species in general. We also showed that glycosylation in Cryptococcus by Pmt2 plays important roles in controlling cell size, resistance to high temperature and osmolarity, capsule formation, sexual reproduction, and virulence.

摘要

重氮苯甲酸B(DBB),也被称为重氮蓝B或固蓝B,可用于区分担子菌酵母和子囊菌。这种化学物质长期以来一直用于酵母菌种在门水平的分类学研究,但DBB染色的潜在机制仍然未知。为了确定DBB染色的分子靶点,我们分离了根癌农杆菌介导的新型隐球菌插入突变体,这是一种担子菌致病性酵母,对DBB染色呈阴性。在其中一个突变体中,我们发现编码蛋白质O-甘露糖基转移酶的PMT2基因被T-DNA插入中断。对PMT2基因进行完全基因敲除表明,该基因负责新型隐球菌中的DBB染色,这表明Pmt2介导的糖基化的一个靶点负责与DBB相互作用。我们还确定,当PMT2基因被删除时,新型隐球菌的近亲加氏隐球菌不会被DBB染色。我们的发现表明,一般来说新型隐球菌属中的DBB染色需要PMT2基因产物进行蛋白质O-甘露糖基化。我们还表明,Pmt2在新型隐球菌中的糖基化在控制细胞大小、耐高温和渗透压、荚膜形成、有性生殖和毒力方面发挥着重要作用。

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