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Characterization of sakA gene from pathogenic dimorphic fungus Penicillium marneffei

机译:致病性双态真菌马尔尼菲青霉sakA基因的鉴定

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摘要

Eukaryotes utilize stress activated protein kinase (SAPK) pathways to adapt to environmental stress, including heat, osmotic, oxidative or nutrient stresses. Penicillium marneffei (Talaromyces marneffei), the dimorphic pathogenic fungus that can cause disseminated mycosis in HIV-infected patients, has to encounter various types of stresses both outside and inside host cells. However, the strategies used by this fungus in response to these stresses are still unclear. In this report, the stress-activated kinase (sakA) gene of P. marneffei was characterized and the roles of this gene on various stress conditions were studied. sakA gene deletion mutant was constructed using the split marker method. The phenotypes and sensitivities to varieties of stresses, including osmotic, oxidative, heat and cell wall stresses of the deletion mutant were compared with the wild type and the sakA complemented strains. Results demonstrated that the P. marneffei sakA gene encoded a putative protein containing TXY phosphorylation lip found in the stress high osmolarity glycerol 1 (Hog1)/Spc1/p38 MAPK family, and that this gene was involved not only in tolerance against oxidative and heat stresses, but also played a role in asexual development, chitin deposition, yeast cell generation in vitro and survival inside mouse and human macrophages. (C) 2014 Elsevier GmbH. All rights reserved.
机译:真核生物利用应力激活蛋白激酶(SAPK)途径来适应环境胁迫,包括热,渗透,氧化或营养胁迫。马尔尼菲青霉菌(Talaromyces marneffei)是一种双态致病性真菌,可在感染HIV的患者中引起弥散性真菌病,必须在宿主细胞内外遇到各种类型的压力。但是,该真菌针对这些压力所采用的策略仍不清楚。在此报告中,表征了P. marneffei的应激激活激酶(sakA)基因,并研究了该基因在各种应激条件下的作用。使用分裂标记法构建了sakA基因缺失突变体。将缺失突变体的渗透胁迫,氧化胁迫,热胁迫和细胞壁胁迫等各种胁迫的表型和敏感性与野生型和sakA互补菌株进行了比较。结果表明,P。marneffei sakA基因编码一种在高渗透压甘油1(Hog1)/ Spc1 / p38 MAPK家族中发现的含有TXY磷酸化唇的推定蛋白,并且该基因不仅参与了对氧化和热胁迫的耐受性,但在无性发育,几丁质沉积,体外酵母细胞生成以及小鼠和人类巨噬细胞内的存活中也发挥了作用。 (C)2014 Elsevier GmbH。版权所有。

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