Suppr超能文献

RepID通过在DAB2启动子处招募CRL4A-JARID1A来抑制巨核细胞分化。

RepID represses megakaryocytic differentiation by recruiting CRL4A-JARID1A at DAB2 promoter.

作者信息

Jo Jae-Hyun, Ok Seon-Mi, Kim Dong-Kyu, Kim Yeong-Mu, Park Jong-Uk, Jung Dong-Hyun, Kim Hye-Ji, Seong Hyun-A, Cho Hyo Je, Nah Jihoon, Kim Sangjune, Fu Haiqing, Redon Christophe E, Aladjem Mirit I, Jang Sang-Min

机构信息

Chungbuk National University.

NCI, NIH.

出版信息

Res Sq. 2023 Jun 26:rs.3.rs-3045396. doi: 10.21203/rs.3.rs-3045396/v1.

Abstract

Background Megakaryocytes (MKs) are platelet precursors, which arise from hematopoietic stem cells (HSCs). While MK lineage commitment and differentiation are accompanied by changes in gene expression, many factors that modulate megakaryopoiesis remain to be uncovered. Replication origin binding protein (RepID) which has multiple histone-code reader including bromodomain, cryptic Tudor domain and WD40 domains and Cullin 4-RING ubiquitin ligase complex (CRL4) recruited to chromatin mediated by RepID have potential roles in gene expression changes via epigenetic regulations. We aimed to investigate whether RepID-CRL4 participates in transcriptional changes required for MK differentiation. Methods The PCR array was performed using cDNAs derived from RepID-proficient or RepID-deficient K562 erythroleukemia cell lines. Correlation between RepID and DAB2 expression was examined in the Cancer Cell Line Encyclopedia (CCLE) through the CellMinerCDB portal. The acceleration of MK differentiation in RepID-deficient K562 cells was determined by estimating cell sizes as well as counting multinucleated cells known as MK phenotypes, and by qRT-PCR analysis to validate transcripts of MK markers using phorbol 12-myristate 13-acetate (PMA)-mediated MK differentiation condition. Interaction between CRL4 and histone methylation modifying enzymes were investigated using BioGRID database, immunoprecipitation and proximity ligation assay. Alterations of expression and chromatin binding affinities of RepID, CRL4 and histone methylation modifying enzymes were investigated using subcellular fractionation followed by immunoblotting. RepID-CRL4-JARID1A-based epigenetic changes on DAB2 promoter were analyzed by chromatin-immunoprecipitation and qPCR analysis. Results RepID-deficient K562 cells highly expressing MK markers showed accelerated MKs differentiation exhibiting increases in cell size, lobulated nuclei together with reaching maximum levels of MK marker expression earlier than RepID-proficient K562 cells. Recovery of WD40 domain-containing RepID constructs in RepID-deficient background repressed DAB2 expression. CRL4A formed complex with histone H3K4 demethylase JARID1A in soluble nucleus and loaded to the DAB2 promoter in a RepID-dependent manner during proliferation condition. RepID, CRL4A, and JARID1A were dissociated from the chromatin during MK differentiation, leading to euchromatinization of the DAB2 promoter. Conclusion This study uncovered a role for the RepID-CRL4A-JARID1A pathway in the regulation of gene expression for MK differentiation, which can form the basis for the new therapeutic approaches to induce platelet production.

摘要

背景

巨核细胞(MKs)是血小板前体,由造血干细胞(HSCs)产生。虽然MK谱系的定向分化伴随着基因表达的变化,但许多调节巨核细胞生成的因子仍有待发现。复制起点结合蛋白(RepID)具有多个组蛋白编码阅读器,包括溴结构域、隐秘的 Tudor 结构域和 WD40 结构域,以及由 RepID 介导募集到染色质上的 Cullin 4-RING 泛素连接酶复合物(CRL4),它们通过表观遗传调控在基因表达变化中具有潜在作用。我们旨在研究RepID-CRL4是否参与MK分化所需的转录变化。方法:使用来自RepID功能正常或RepID缺陷的K562红白血病细胞系的cDNA进行PCR阵列分析。通过CellMinerCDB门户在癌细胞系百科全书(CCLE)中检测RepID与DAB2表达之间的相关性。通过估计细胞大小以及计数称为MK表型的多核细胞,并通过qRT-PCR分析来验证使用佛波酯12-肉豆蔻酸酯13-乙酸酯(PMA)介导的MK分化条件下MK标志物的转录本,来确定RepID缺陷的K562细胞中MK分化的加速情况。使用BioGRID数据库、免疫沉淀和邻近连接分析研究CRL4与组蛋白甲基化修饰酶之间的相互作用。使用亚细胞分级分离后进行免疫印迹,研究RepID、CRL4和组蛋白甲基化修饰酶的表达和染色质结合亲和力的变化。通过染色质免疫沉淀和qPCR分析,分析基于RepID-CRL4-JARID1A的DAB2启动子上的表观遗传变化。结果:高度表达MK标志物的RepID缺陷的K562细胞显示出MK分化加速,表现为细胞大小增加、核分叶,并且比RepID功能正常的K562细胞更早达到MK标志物表达的最高水平。在RepID缺陷背景中恢复含WD40结构域的RepID构建体可抑制DAB2表达。在增殖条件下,CRL4A与组蛋白H3K4去甲基化酶JARID1A在可溶性细胞核中形成复合物,并以RepID依赖的方式加载到DAB2启动子上。在MK分化过程中,RepID、CRL4A和JARID1A从染色质上解离,导致DAB2启动子的常染色质化。结论:本研究揭示了RepID-CRL4A-JARID1A途径在调节MK分化基因表达中的作用,这可为诱导血小板生成的新治疗方法奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8d2/10350187/2dca0a969577/nihpp-rs3045396v1-f0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验