Department of Molecular Biology, Institute for Molecular Biology and Genetics, Jeonbuk National University, Jeonju, 54896, Republic of Korea.
J Microbiol. 2022 Jan;60(1):57-62. doi: 10.1007/s12275-022-1498-0. Epub 2021 Nov 26.
Laccase3 is an important virulence factor of the fungus Cryphonectria parasitica. Laccase3 gene (lac3) transcription is induced by tannic acid, a group of phenolic compounds found in chestnut trees, and its induction is regulated by the hypovirus CHV1 infection. CpHsp24, a small heat shock protein gene of C. parasitica, plays a determinative role in stress adaptation and pathogen virulence. Having uncovered in our previous study that transcriptional regulation of the CpHsp24 gene in response to tannic acid supplementation and CHV1 infection was similar to that of the lac3, and that conserved phenotypic changes of reduced virulence were observed in mutants of both genes, we inferred that both genes were implicated in a common pathway. Building on this finding, in this paper we examined whether the CpHsp24 protein (CpHSP24) was a molecular chaperone for the lac3 protein (LAC3). Our pull-down experiment indicated that the protein products of the two genes directly interacted with each other. Heterologous co-expression of CpHsp24 and lac3 genes using Saccharomyces cerevisiae resulted in more laccase activity in the cotransformant than in a parental lac3-expresssing yeast strain. These findings suggest that CpHSP24 is, in fact, a molecular chaperone for the LAC3, which is critical component of fungal pathogenesis.
漆酶 3 是一种重要的致病真菌栗疫病菌的毒力因子。漆酶 3 基因(lac3)转录被单宁酸诱导,单宁酸是一种存在于栗树中的酚类化合物,其诱导受 Hypovirus CHV1 感染的调节。栗疫病菌的小热休克蛋白基因 CpHsp24 在应激适应和病原体毒力中起决定性作用。在我们之前的研究中发现,CpHsp24 基因对单宁酸补充和 CHV1 感染的转录调控与 lac3 相似,并且这两个基因的突变体都观察到了毒力降低的保守表型变化,我们推断这两个基因都涉及到一个共同的途径。基于这一发现,在本文中,我们研究了 CpHsp24 蛋白(CpHSP24)是否是 lac3 蛋白(LAC3)的分子伴侣。我们的下拉实验表明,这两个基因的蛋白产物直接相互作用。使用酿酒酵母异源共表达 CpHsp24 和 lac3 基因导致共转化体中的漆酶活性高于亲本 lac3 表达酵母菌株。这些发现表明,CpHSP24 实际上是 LAC3 的分子伴侣,LAC3 是真菌发病机制的关键组成部分。