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COMPASS 样复合物通过调控稻瘟病菌中 H3K4me3 介导的靶基因表达来调节真菌发育和致病性。

The COMPASS-like complex modulates fungal development and pathogenesis by regulating H3K4me3-mediated targeted gene expression in Magnaporthe oryzae.

机构信息

Beijing Key Laboratory of New Technology in Agricultural Application, National Demonstration Center for Experimental Plant Production Education, Beijing University of Agriculture, Beijing, China.

Center for Research and Cooperation, Novogene Bioinformatics Institute, Beijing, China.

出版信息

Mol Plant Pathol. 2021 Apr;22(4):422-439. doi: 10.1111/mpp.13035. Epub 2021 Feb 8.

Abstract

Histone-3-lysine-4 (H3K4) methylation is catalysed by the multiprotein complex known as the Set1/COMPASS or MLL/COMPASS-like complex, an element that is highly evolutionarily conserved from yeast to humans. However, the components and mechanisms by which the COMPASS-like complex targets the H3K4 methylation of plant-pathogenic genes in fungi remain elusive. Here we present a comprehensive analysis combining biochemical, molecular, and genome-wide approaches to characterize the roles of the COMPASS-like family in the rice blast fungus Magnaporthe oryzae, a model plant pathogen. We purified and identified six conserved subunits of COMPASS from M. oryzae: MoBre2 (Cps60/ASH2L), MoSpp1 (Cps40/Cfp1), MoSwd2 (Cps35), MoSdc1 (Cps25/DPY30), MoSet1 (MLL/ALL), and MoRbBP5 (Cps50), using an affinity tag on MoBre2. We determined the sequence repeat in dual-specificity kinase splA and ryanodine receptors domain of MoBre2 can interact directly with the DPY30 domain of MoSdc1 in vitro. Furthermore, we found that deletion of the genes encoding COMPASS subunits of MoBre2, MoSPP1, and MoSwd2 caused similar defects regarding invasive hyphal development and pathogenicity. Genome-wide profiling of H3K4me3 revealed that it has remarkable co-occupancy at the transcription start site regions of target genes. Significantly, these target genes are often involved in spore germination and pathogenesis. Decreased gene expression caused by the deletion of MoBre2, MoSwd2, or MoSpp1 was highly correlated with a decrease in H3K4me3. These results suggest that MoBre2, MoSpp1, and MoSwd2 function as a whole COMPASS complex, contributing to fungal development and pathogenesis by regulating H3K4me3-targeted genes in M. oryzae.

摘要

组蛋白 3-赖氨酸 4(H3K4)甲基化由多蛋白复合物催化,该复合物被称为 Set1/COMPASS 或 MLL/COMPASS 样复合物,该复合物在从酵母到人高度进化保守。然而,COMPASS 样复合物将真菌中的植物病原基因的 H3K4 甲基化作为靶点的成分和机制仍然难以捉摸。在这里,我们通过生化、分子和全基因组方法的综合分析,对水稻病原菌稻瘟病菌 Magnaporthe oryzae 中的 COMPASS 样家族的作用进行了表征,这是一种模式植物病原体。我们使用 MoBre2 上的亲和标签,从 M.oryzae 中纯化并鉴定了 COMPASS 的六个保守亚基:MoBre2(Cps60/ASH2L)、MoSpp1(Cps40/Cfp1)、MoSwd2(Cps35)、MoSdc1(Cps25/DPY30)、MoSet1(MLL/ALL)和 MoRbBP5(Cps50)。我们确定了双特异性激酶 splA 和肌醇 1,4,5-三磷酸受体域中的序列重复可以在体外与 MoSdc1 的 DPY30 域直接相互作用。此外,我们发现 MoBre2、MoSPP1 和 MoSwd2 编码 COMPASS 亚基的基因缺失导致侵入性菌丝发育和致病性的相似缺陷。H3K4me3 的全基因组分析显示,它在靶基因的转录起始位点区域具有显著的共占据。显著的是,这些靶基因通常参与孢子萌发和发病机制。MoBre2、MoSwd2 或 MoSpp1 缺失引起的基因表达下降与 H3K4me3 的下降高度相关。这些结果表明,MoBre2、MoSpp1 和 MoSwd2 作为一个完整的 COMPASS 复合物发挥作用,通过调节 M.oryzae 中的 H3K4me3 靶向基因来促进真菌发育和发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39f1/7938624/d4106ecfda6b/MPP-22-422-g002.jpg

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