首页> 外文期刊>Eukaryotic cell >The Mold-Specific MS8 Gene Is Required for Normal Hypha Formation in the Dimorphic Pathogenic Fungus Histoplasma capsulatum
【24h】

The Mold-Specific MS8 Gene Is Required for Normal Hypha Formation in the Dimorphic Pathogenic Fungus Histoplasma capsulatum

机译:霉菌特定的MS8基因是正常的菌丝在双态致病性真菌组织胞浆囊中形成所必需的。

获取原文
           

摘要

The dimorphic fungus Histoplasma capsulatum is the etiologic agent of one of the most common systemic mycoses of humans, histoplasmosis. In the environment, H. capsulatum grows in a differentiated mold form and shifts to an undifferentiated yeast form after mold fragments or spores are inhaled. This mold-to-yeast shift is required for disease. Little is known about the molecular biology of dimorphism in Histoplasma, and most studies have been directed toward yeast-specific genes. While it is important to examine the role of genes upregulated in the yeast morphotype, genes which are silenced in the yeast (i.e., mold-specific genes) may also play a critical role in dimorphism. To begin to examine this hypothesis, we report here the first misexpression and knockout analysis of a mold-specific gene in Histoplasma. The strongly expressed MS8 gene encodes a predicted 21-kDa protein extremely rich in glycine and glutamine. Forced expression of MS8 driven by the TEF1 promoter in yeast did not alter the yeast morphology at 37°C or mold formation at 25°C. Yeast expressing MS8 did exhibit clumping in liquid medium and formed “sticky” colonies on agar plates. Allelic replacement of MS8 was accomplished by a positive-negative selection procedure. ms8 knockout mutants formed apparently normal yeast at 37°C but gave rise to aberrant mycelia at 25°C. The mold colonies of the knockouts were less than half as large as normal, had a granular surface, produced a dark-red pigment, and formed short hyphae which were 40% wider with a distinctive twisted “zig-zag” shape.
机译:双形真菌荚膜荚膜胞质菌是人类最常见的系统性真菌病之一,组织胞浆菌病的病原体。在环境中, H。荚膜以分化的霉菌形式生长,并在吸入霉菌碎片或孢子后转变为未分化的酵母形式。这种疾病需要从霉菌到酵母的转变。关于 Histoplasma 中双态性的分子生物学知之甚少,并且大多数研究都针对酵母特异性基因。虽然检查在酵母形态型中上调的基因的作用很重要,但是在酵母中沉默的基因(即霉菌特异性基因)也可能在二态性中起关键作用。为了检验这个假设,我们在这里报道了 Histoplasma 中霉菌特异性基因的首次错误表达和敲除分析。强烈表达的 MS8 基因编码一种预测的21 kDa蛋白,其中富含甘氨酸和谷氨酰胺。由 TEF1 启动子驱动的 MS8 在酵母中的强制表达不会改变37°C时的酵母形态或25°C时的霉菌形成。表达 MS8 的酵母在液体培养基中确实会结块,并在琼脂平板上形成“粘性”菌落。 MS8 的等位基因置换是通过阳性-阴性选择程序完成的。 ms8 敲除突变体在37°C时看似正常酵母,但在25°C时产生异常菌丝体。敲除物的霉菌菌落小于正常菌落的一半,表面呈颗粒状,产生深红色颜料,并形成短菌丝,菌丝宽40%,具有独特的扭曲的“ Z字形”形状。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号