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新型隐球菌致病所需的第三个与荚膜相关基因CAP60的分离。

Isolation of the third capsule-associated gene, CAP60, required for virulence in Cryptococcus neoformans.

作者信息

Chang Y C, Kwon-Chung K J

机构信息

Laboratory of Clinical Investigation, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Infect Immun. 1998 May;66(5):2230-6. doi: 10.1128/IAI.66.5.2230-2236.1998.

Abstract

A polysaccharide capsule is one of the most important virulence factors for the pathogenic fungus Cryptococcus neoformans. We previously characterized two capsule-associated genes, CAP59 and CAP64. To further dissect the molecular mechanism of capsule synthesis, 16 acapsular mutants induced by 4-nitroquinoline-1-oxide were obtained. The acapsular phenotype of one of these mutants was complemented. The cloned gene was designated CAP60, and deletion of this newly described capsule-associated gene resulted in an acapsular phenotype. The proposed 67-kDa Cap60p contains 592 amino acids and appears to have a putative transmembrane domain close to the N terminus. DNA sequence analysis revealed that CAP60 has similarity to CAP59 at the center portion of its coding regions. Contour-clamped homogeneous electric field blot analysis suggested that these two genes are on the same chromosome. CAP60 and CAP59, however, could not be functionally substituted for each other by direct complementation or by domain swap experiments. In addition, CAP60 is closely linked to a gene which is similar to a cellulose growth-specific gene of Agaricus bisporus, CEL1. Immunogold electron microscopy studies of the epitope-tagged CAP60 gene revealed that Cap60p was primarily localized to the nuclear membrane. Animal model studies indicated that CAP60 is essential for virulence. Thus, CAP60 is required for both capsule formation and virulence.

摘要

多糖荚膜是新型隐球菌致病真菌最重要的毒力因子之一。我们之前鉴定了两个与荚膜相关的基因,CAP59和CAP64。为了进一步剖析荚膜合成的分子机制,我们获得了16个由4-硝基喹啉-1-氧化物诱导产生的无荚膜突变体。其中一个突变体的无荚膜表型得到了互补。克隆的基因被命名为CAP60,删除这个新描述的与荚膜相关的基因会导致无荚膜表型。推测的67 kDa Cap60p包含592个氨基酸,并且似乎在靠近N端处有一个推定的跨膜结构域。DNA序列分析显示,CAP60在其编码区的中心部分与CAP59有相似性。轮廓钳制均匀电场印迹分析表明这两个基因位于同一条染色体上。然而,CAP60和CAP59不能通过直接互补或结构域交换实验在功能上相互替代。此外,CAP60与一个类似于双孢蘑菇纤维素生长特异性基因CEL1的基因紧密相连。对带有表位标签的CAP60基因进行免疫金电子显微镜研究表明,Cap60p主要定位于核膜。动物模型研究表明,CAP60对毒力至关重要。因此,CAP60对于荚膜形成和毒力都是必需的。

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本文引用的文献

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The second capsule gene of cryptococcus neoformans, CAP64, is essential for virulence.
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