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首页> 外文期刊>Microbiology >A putative dual-specific protein phosphatase encoded by YVH1 controls growth, filamentation and virulence in Candida albicans
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A putative dual-specific protein phosphatase encoded by YVH1 controls growth, filamentation and virulence in Candida albicans

机译:由YVH1编码的推定的双特异性蛋白质磷酸酶对念珠菌念珠菌的生长,丝状和毒力控制

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In response to stimulants, such as serum, the yeast cells of the opportunistic fungal pathogen Candida albicans form germ tubes, which develop into hyphae. Yvh1p, one of the 29 protein phosphatases encoded in the C. albicans genome, has 45?% identity with the dual-specific phosphatase Yvh1p of the model yeast Saccharomyces cerevisiae. In this study, Yvh1p expression was not observed during the initial step of germ tube formation, although Yvh1p was expressed constitutively in cell cycle progression of yeast or hyphal cells. In an attempt to analyse the function of Yvh1p phosphatase, the complete ORFs of both alleles were deleted by replacement with hph200–URA3–hph200 and ARG4. Although YVH1 has nine single-nucleotide polymorphisms in its coding sequence, both YVH1 alleles were able to complement the YVH1 gene disruptant. The vegetative growth of Δyvh1 was significantly slower than the wild-type. The hyphal growth of Δyvh1 on agar, or in a liquid medium, was also slower than the wild-type because of the delay in nuclear division and septum formation, although germ tube formation was similar between the wild-type and the disruptant. Despite the slow hyphal growth, the expression of several hypha-specific genes in Δyvh1 was not delayed or repressed compared with that of the wild-type. Infection studies using mouse models revealed that the virulence of Δyvh1 was less than that of the wild-type. Thus, YVH1 contributes to normal vegetative yeast or hyphal cell cycle progression and pathogenicity, but not to germ tube formation.
机译:响应于刺激剂,例如血清,机会性真菌病原体念珠菌的酵母细胞形成胚胎组织胚胎管,其发展成菌丝。 YVH1P是在C. albicans基因组中编码的29种蛋白质磷酸酶之一,其具有45〜%的同一性与模型酵母酿酒酵母的双特异性磷酸酶YVH1P。在该研究中,在胚管形成的初始步骤期间未观察到YVH1P表达,尽管YVH1P在酵母或亚酚细胞的细胞周期进展中表达了YVH1P。在试图分析YVH1P磷酸酶的功能中,用HPH200-URA3-HPH200替换并arg4通过替代替代两种等位基因的完整ORF。虽然YVH1在其编码序列中具有九个单核苷酸多态性,但是两种YVH1等位基因都能够补充YVH1基因破坏剂。 ΔYVH1的营养生长明显慢于野生型。由于核分裂和隔膜形成的延迟,琼脂对琼脂或液体介质中的琼脂或液体介质中的含量ΔYvH1或液体介质中的剪氏生长也比野生型相似。尽管悬垂的生长缓慢,但与野生型相比,ΔYVH1中的几种特异性基因的表达不会延迟或压抑。使用小鼠模型的感染研究表明,ΔYVH1的毒力小于野生型的毒力。因此,YVH1有助于正常的营养酵母或亚酚细胞周期进展和致病性,但不是毒性管形成。

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