转录因子CfHac1调控果炭疽菌中泛素介导的er相关错误折叠蛋白的降解和致病性。

IF 5.8
Sizheng Li, Yuan Guo, Shengpei Zhang, He Li
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引用次数: 0

摘要

在相互作用过程中,病原真菌受到来自寄主植物的内质网(ER)胁迫,导致未折叠蛋白反应(UPR)途径的激活。我们在C. fructicola中发现了bZIP转录因子CfHac1,这是一种涉及多种植物疾病的致病生物,我们发现它在内质网络胁迫反应和致病性中起着至关重要的作用。然而,CfHac1在调节er相关错误折叠蛋白降解中的作用尚不清楚。在本研究中,我们发现CfHAC1基因通过非常规剪接调控分生孢子的产生、附着胞的形成、内质网应激反应和致病性。进一步研究发现,CfHAC1基因还影响er相关错误折叠蛋白的泛素化,并介导其降解。我们进一步鉴定了两个泛素连接酶基因CfHRD1和CfHRD3,在ΔCfhac1突变株中表现出显著的下调。随后的研究表明,CfHAC1基因通过非常规剪接影响CfHRD1和CfHRD3的表达,这两个基因通过泛素化控制er相关错误折叠蛋白的降解,并影响果孢菌的致病性。综上所述,我们的研究结果揭示了转录因子CfHac1影响泛素连接酶基因CfHRD1和CfHRD3的表达,导致er相关错误折叠蛋白泛素化和降解以及致病性的机制。这为开发靶向该通路内关键基因的新型药物提供了理论基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The transcription factor CfHac1 regulates the degradation of ubiquitin-mediated ER-associated misfolded proteins and pathogenicity in Colletotrichum fructicola.

During interactions, pathogenic fungi are subjected to endoplasmic reticulum (ER) stress from the host plants, resulting in the activation of the unfolded protein response (UPR) pathway. We identified the bZIP transcription factor CfHac1 in C. fructicola, which is a pathogenic organism implicated in a variety of plant diseases, and we found it to be crucial for the ER stress response and pathogenicity. However, the role of CfHac1 in regulating the degradation of ER-associated misfolded proteins remains unclear. In this study, we discovered that the CfHAC1 gene regulates conidial production, appressorium formation, response to ER stress, and pathogenicity through unconventional splicing. Further research revealed that the CfHAC1 gene also affects the ubiquitination of ER-associated misfolded proteins and mediates their degradation. We further identified two ubiquitin ligase genes, CfHRD1 and CfHRD3, that exhibit significant down-regulation in the ΔCfhac1 mutant strain. Subsequent investigations revealed that the CfHAC1 gene affects CfHRD1 and CfHRD3 expression through unconventional splicing, with both genes managing the degradation of ER-associated misfolded proteins via ubiquitination and influencing C. fructicola pathogenicity. Taken together, our results reveal a mechanism by which the transcription factor CfHac1 affects the expression of the ubiquitin ligase genes CfHRD1 and CfHRD3, leading to the ubiquitination and degradation of ER-associated misfolded proteins and pathogenicity. This provides a theoretical basis for the development of novel agents targeting key genes within this pathway.

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