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视网膜母细胞瘤相关的 RNA 导向的 DNA 甲基化(RdDM)途径关键因子的相互作用及其对根发育的影响。

RETINOBLASTOMA-RELATED interactions with key factors of the RNA-directed DNA methylation (RdDM) pathway and its influence on root development.

机构信息

Laboratory of Molecular and Developmental Complexity at Laboratorio Nacional de Genómica Para la Biodiversidad, Centro de Investigación y de Estudios Avanzados, del Instituto Politécnico Nacional, (CINVESTAV-IPN), 36590, Irapuato, México.

Biological and Environmental Science and Engineering Division (BESE), King Abdullah University of Science and Technology (KAUST), Thuwal, 23955, Saudi Arabia.

出版信息

Planta. 2023 Apr 30;257(6):105. doi: 10.1007/s00425-023-04135-x.

Abstract

Our study presents evidence for a novel mechanism for RBR function in transcriptional gene silencing by interacting with key players of the RdDM pathway in Arabidopsis and several plant clades. Transposable elements and other repetitive elements are silenced by the RNA-directed DNA methylation pathway (RdDM). In RdDM, POLIV-derived transcripts are converted into double-stranded RNA (dsRNA) by the activity of RDR2 and subsequently processed into 24 nucleotide short interfering RNAs (24-nt siRNAs) by DCL3. 24-nt siRNAs serve as guides to direct AGO4-siRNA complexes to chromatin-bound POLV-derived transcripts generated from the template/target DNA. The interaction between POLV, AGO4, DMS3, DRD1, RDM1 and DRM2 promotes DRM2-mediated de novo DNA methylation. The Arabidopsis Retinoblastoma protein homolog (RBR) is a master regulator of the cell cycle, stem cell maintenance, and development. We in silico predicted and explored experimentally the protein-protein interactions (PPIs) between RBR and members of the RdDM pathway. We found that the largest subunits of POLIV and POLV (NRPD1 and NRPE1), the shared second largest subunit of POLIV and POLV (NRPD/E2), RDR1, RDR2, DCL3, DRM2, and SUVR2 contain canonical and non-canonical RBR binding motifs and several of them are conserved since algae and bryophytes. We validated experimentally PPIs between Arabidopsis RBR and several of the RdDM pathway proteins. Moreover, seedlings from loss-of-function mutants in RdDM and RBR show similar phenotypes in the root apical meristem. We show that RdDM and SUVR2 targets are up-regulated in the 35S:AmiGO-RBR background.

摘要

我们的研究提供了证据,证明 RBR 通过与拟南芥和几个植物进化枝的 RdDM 途径的关键成员相互作用,在转录基因沉默中具有新的功能机制。转座元件和其他重复元件通过 RNA 指导的 DNA 甲基化途径(RdDM)沉默。在 RdDM 中,POLIV 衍生的转录物通过 RDR2 的活性被转化为双链 RNA(dsRNA),随后被 DCL3 加工成 24 个核苷酸的小干扰 RNA(24-nt siRNA)。24-nt siRNA 作为向导,指导 AGO4-siRNA 复合物到染色质结合的 POLV 衍生的转录物,这些转录物是由模板/靶 DNA 产生的。POLV、AGO4、DMS3、DRD1、RDM1 和 DRM2 之间的相互作用促进了 DRM2 介导的从头 DNA 甲基化。拟南芥视网膜母细胞瘤蛋白同源物(RBR)是细胞周期、干细胞维持和发育的主要调节剂。我们在计算机上预测并实验探索了 RBR 与 RdDM 途径成员之间的蛋白质-蛋白质相互作用(PPIs)。我们发现,POLIV 和 POLV 的最大亚基(NRPD1 和 NRPE1)、POLIV 和 POLV 的共享第二大亚基(NRPD/E2)、RDR1、RDR2、DCL3、DRM2 和 SUVR2 包含典型和非典型的 RBR 结合基序,其中一些自藻类和苔藓植物以来就保守存在。我们实验验证了拟南芥 RBR 与 RdDM 途径的几个蛋白之间的 PPIs。此外,RdDM 和 RBR 功能丧失突变体的幼苗在根尖分生组织中表现出相似的表型。我们表明,RdDM 和 SUVR2 的靶标在 35S:AmiGO-RBR 背景中上调。

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