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植物移动域蛋白 MAIN 和 MAIL1 与磷酸酶 PP7L 相互作用,以调节拟南芥中的基因表达和沉默转座元件。

The plant mobile domain proteins MAIN and MAIL1 interact with the phosphatase PP7L to regulate gene expression and silence transposable elements in Arabidopsis thaliana.

机构信息

LGDP-UMR5096, CNRS, Perpignan, France.

LGDP-UMR5096, Université de Perpignan, France.

出版信息

PLoS Genet. 2020 Apr 14;16(4):e1008324. doi: 10.1371/journal.pgen.1008324. eCollection 2020 Apr.

Abstract

Transposable elements (TEs) are DNA repeats that must remain silenced to ensure cell integrity. Several epigenetic pathways including DNA methylation and histone modifications are involved in the silencing of TEs, and in the regulation of gene expression. In Arabidopsis thaliana, the TE-derived plant mobile domain (PMD) proteins have been involved in TE silencing, genome stability, and control of developmental processes. Using a forward genetic screen, we found that the PMD protein MAINTENANCE OF MERISTEMS (MAIN) acts synergistically and redundantly with DNA methylation to silence TEs. We found that MAIN and its close homolog MAIN-LIKE 1 (MAIL1) interact together, as well as with the phosphoprotein phosphatase (PPP) PP7-like (PP7L). Remarkably, main, mail1, pp7l single and mail1 pp7l double mutants display similar developmental phenotypes, and share common subsets of upregulated TEs and misregulated genes. Finally, phylogenetic analyses of PMD and PP7-type PPP domains among the Eudicot lineage suggest neo-association processes between the two protein domains to potentially generate new protein function. We propose that, through this interaction, the PMD and PPP domains may constitute a functional protein module required for the proper expression of a common set of genes, and for silencing of TEs.

摘要

转座元件 (TEs) 是必须保持沉默以确保细胞完整性的 DNA 重复序列。包括 DNA 甲基化和组蛋白修饰在内的几种表观遗传途径参与 TEs 的沉默以及基因表达的调控。在拟南芥中,TE 衍生的植物移动结构域 (PMD) 蛋白参与 TE 沉默、基因组稳定性和发育过程的调控。通过正向遗传学筛选,我们发现 PMD 蛋白 MAINTENANCE OF MERISTEMS (MAIN) 与 DNA 甲基化协同作用以沉默 TEs。我们发现 MAIN 及其近同源物 MAIN-LIKE 1 (MAIL1) 相互作用,以及与磷酸蛋白磷酸酶 (PPP) 样 (PP7L) 相互作用。值得注意的是,main、mail1、pp7l 单突变体和 mail1 pp7l 双突变体显示出相似的发育表型,并且具有上调的 TEs 和失调基因的共同亚集。最后,在真双子叶植物谱系中 PMD 和 PP7 型 PPP 结构域的系统发育分析表明,这两个蛋白结构域之间存在新的关联过程,可能产生新的蛋白功能。我们提出,通过这种相互作用,PMD 和 PPP 结构域可能构成一个功能蛋白模块,该模块对于一组共同基因的正确表达以及 TEs 的沉默是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6162/7156037/fa69f4442bd0/pgen.1008324.g002.jpg

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