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Regulation of the Candida albicans Cell Wall Damage Response by Transcription Factor Sko1 and PAS Kinase Psk1

机译:转录因子Sko1和PAS激酶Psk1对白色念珠菌细胞壁损伤反应的调节。

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摘要

The environmental niche of each fungus places distinct functional demands on the cell wall. Hence cell wall regulatory pathways may be highly divergent. We have pursued this hypothesis through analysis of Candida albicans transcription factor mutants that are hypersensitive to caspofungin, an inhibitor of beta-1,3-glucan synthase. We report here that mutations in SKO1 cause this phenotype. C. albicans Sko1 undergoes Hog1-dependent phosphorylation after osmotic stress, like its Saccharomyces cerevisiae orthologues, thus arguing that this Hog1-Sko1 relationship is conserved. However, Sko1 has a distinct role in the response to cell wall inhibition because 1) sko1 mutants are much more sensitive to caspofungin than hog1 mutants; 2) Sko1 does not undergo detectable phosphorylation in response to caspofungin; 3) SKO1 transcript levels are induced by caspofungin in both wild-type and hog1 mutant strains; and 4) sko1 mutants are defective in expression of caspofungin-inducible genes that are not induced by osmotic stress. Upstream Sko1 regulators were identified from a panel of caspofungin-hypersensitive protein kinase\u2013defective mutants. Our results show that protein kinase Psk1 is required for expression of SKO1 and of Sko1-dependent genes in response to caspofungin. Thus Psk1 and Sko1 lie in a newly described signal transduction pathway.
机译:每种真菌的环境生态位对细胞壁都有不同的功能要求。因此,细胞壁调节途径可能高度不同。我们已经通过分析对Caspofungin(β-1,3-葡聚糖合酶的抑制剂)高度敏感的白色念珠菌转录因子突变体来追求这一假设。我们在这里报告SKO1中的突变导致此表型。白色念珠菌Sko1像其酿酒酵母直向同源物一样,在渗透胁迫后经历了Hog1依赖的磷酸化,因此认为这种Hog1-Sko1关系是保守的。然而,Sko1在细胞壁抑制反应中具有独特的作用,因为1)sko1突变体对caspofungin的敏感性比hog1突变体高得多; 2)响应卡泊芬净,Sko1不经历可检测的磷酸化; 3)卡泊芬净在野生型和hog1突变株中均诱导SKO1转录水平。 4)sko1突变体在卡泊芬净诱导型基因的表达中存在缺陷,该基因不能被渗透压诱导。从一组卡泊芬净高敏蛋白激酶\ u2013缺陷型突变体中鉴定了上游Sko1调节剂。我们的结果表明,蛋白激酶Psk1是表达SKO1和Sko1依赖性基因以响应卡泊芬净的必要条件。因此,Psk1和Sko1位于新描述的信号转导途径中。

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