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烟曲霉孢子蛋白质组学和遗传学研究表明,VeA抑制DefA介导的DNA损伤反应。

Aspergillus fumigatus spore proteomics and genetics reveal that VeA represses DefA-mediated DNA damage response.

作者信息

Shin Kwang-Soo, Park Hee-Soo, Kim Young, Heo In-Beom, Kim Young Hwan, Yu Jae-Hyuk

机构信息

Division of Life Science, Daejeon University, Daejeon, Republic of Korea.

School of Food Science and Biotechnology, Kyungpook National University, Daegu, Republic of Korea.

出版信息

J Proteomics. 2016 Oct 4;148:26-35. doi: 10.1016/j.jprot.2016.07.022. Epub 2016 Jul 25.

Abstract

Aspergillus fumigatus reproduces and infects host by forming a high number of small asexual spores (conidia). The velvet proteins are global transcriptional regulators governing the complex process of conidiogenesis in this fungus. Here, to further understand the velvet-mediated regulation, we carried out comparative proteomic analyses of conidia of wild type (WT) and three velvet mutants (ΔveA, ΔvelB and ΔvosA). Cluster analysis of 184 protein spots showing at least 1.5-fold differential accumulation between WT and mutants reveal the clustering of WT- ΔveA and ΔvelB-ΔvosA. Among 43 proteins identified by Nano-LC-ESI-MS/MS, 23 including several heat shock proteins showed more than two-fold reduction in both the ∆velB and ∆vosA conidia. On the contrary, three proteins exhibited more than five-fold increase in ∆veA only, including the putative RNA polymerase II degradation factor DefA. The deletion of defA resulted in a reduced number of conidia and restricted colony growth. In addition, the defA deletion mutant conidia showed hypersensitivity against the DNA damaging agents NQO and MMS, while the ΔveA mutant conidia were more resistant against to NQO. Taken together, we propose that VeA controls protein level of DefA in conidia, which are dormant and equipped with multiple layers of protection against environmental cues.

摘要

烟曲霉通过形成大量小型无性孢子(分生孢子)进行繁殖并感染宿主。天鹅绒蛋白是全局性转录调节因子,控制着这种真菌中复杂的分生孢子形成过程。在此,为了进一步了解天鹅绒介导的调控,我们对野生型(WT)和三个天鹅绒突变体(ΔveA、ΔvelB和ΔvosA)的分生孢子进行了比较蛋白质组学分析。对184个在野生型和突变体之间积累差异至少1.5倍的蛋白质斑点进行聚类分析,揭示了野生型-ΔveA和ΔvelB-ΔvosA的聚类情况。通过纳升液相色谱-电喷雾串联质谱(Nano-LC-ESI-MS/MS)鉴定的43种蛋白质中,包括几种热休克蛋白在内的23种蛋白质在ΔvelB和ΔvosA分生孢子中的含量均降低了两倍以上。相反,三种蛋白质仅在ΔveA中表现出五倍以上的增加,包括推定的RNA聚合酶II降解因子DefA。defA的缺失导致分生孢子数量减少和菌落生长受限。此外,defA缺失突变体的分生孢子对DNA损伤剂NQO和MMS表现出超敏反应,而ΔveA突变体的分生孢子对NQO更具抗性。综上所述,我们提出VeA控制分生孢子中DefA的蛋白质水平,分生孢子处于休眠状态,并具有多层抵御环境信号的保护机制。

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