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A GAS-like gene family in the pathogenic fungus Candida glabrata

机译:致病性真菌念珠菌Glabrata的天然气基因家族

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In fungi, the cell wall plays a major role in host–pathogen interactions. Despite this, little is known about the molecular basis of cell wall assembly in Candida glabrata, which has emerged as the second most common cause of systemic candidosis. A C. glabrata gene family, CgGAS1–3, that shares significant homologies with both the GAS1 gene of Saccharomyces cerevisiae, which is necessary for cell wall assembly, and the pH-regulated genes PHR1 and PHR2 of Candida albicans, which are involved in cell wall assembly and required for virulence, has been cloned. Among the members of this family, CgGAS1–3 display a unique expression pattern. Both CgGAS1 and CgGAS2 are constitutively expressed. In contrast, CgGAS3 transcript was not detectable under any of the assayed conditions. The C. glabrata actin gene, CgACT1, has also been cloned to be used as a meaningful loading control in Northern blots. CgGAS1 and CgGAS2 were deleted by two different methodological approaches. A rapid PCR-based strategy by which gene disruption was achieved with short regions of homology (50?bp) was applied successfully to C. glabrata. ΔCggas1 or ΔCggas2 cells demonstrated similar aberrant morphologies, displaying an altered bud morphology and forming floccose aggregates. These phenotypes suggest a role for CgGAS1 and CgGAS2 in cell wall biosynthesis. Further evidence for this hypothesis was obtained by successful functional complementation of a gas1 null mutation in S. cerevisiae with the C. glabrata CgGAS1 or CgGAS2 gene.
机译:在真菌中,细胞壁在宿主病原体相互作用中发挥着重要作用。尽管如此,关于Candida Glabrata的细胞壁组件的分子基础知之甚少,它被赋予了第二种最常见的系统性患病症的原因。 C.Glabrata Gene Family CGGAS1-3,与酿酒酵母组件的酿酒酵母的GAS1基因和Cellida albicans的pH-调节基因BR1和PHR2有关,与糖壁组件所必需的酵母葡萄球菌的GAL11-3分享显着的同源物已经克隆了墙壁组装和毒力所需的毒力。在这个家庭的成员中,CGGAS1-3显示一个唯一的表达式模式。 CGGAS1和CGGAS2都是组成思考的。相比之下,CGGAS3转录物在任何测定条件下都没有检测到。 C.blabrata actin基因CGact1也被克隆为北部印迹中的有意义的负载控制。 CGGAS1和CGGAS2被两种不同的方法方法删除。通过将基因破坏的基于PCR的基于PCR的策略成功地施加到C.Glabrata的较短地区(50μlbp)。 Δcggas1或Δcggas2细胞显示出类似的异常形态,显示出改变的芽形态并形成絮凝剂聚集体。这些表型表明CGGAS1和CGGAS2在细胞壁生物合成中的作用。通过与C.Glabrata CgGAS1或CGGAS2基因的S.Cerevisiae的Gas1零突变成功互补的函数互补,获得了该假设的进一步证据。

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