Nuclear-cytoplasmic shuttling of class IIa histone deacetylases regulates somatic cell reprogramming

IF 4 Q2 CELL & TISSUE ENGINEERING Cell Regeneration Pub Date : 2019-06-01 DOI:10.1016/j.cr.2018.11.001
Zhiwei Luo , Xiaobing Qing , Christina Benda , Zhijian Huang , Meng Zhang , Yinghua Huang , Hui Zhang , Lulu Wang , Yiwei Lai , Carl Ward , Giacomo Volpe , Xiaofen Zhong , Baoming Qin , Qiang Zhuang , Miguel A. Esteban , Wenjuan Li
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引用次数: 10

Abstract

Class IIa histone deacetylases (HDACs) are a subfamily of HDACs with important functions in development and adult tissue homeostasis. As opposed to other HDACs, they lack catalytic function and bind transcription factors to recruit transcriptional co-regulators, mostly co-repressors such as nuclear receptor co-repressor (NCoR)/silencing mediator of retinoid and thyroid hormone receptor (SMRT). Class IIa HDACs enhance mouse somatic cell reprogramming to induced pluripotent stem cells (iPSCs) by repressing the function of the pro-mesenchymal transcription factor myocyte enhancer factor 2 (MEF2), which is upregulated during this process. Here, we describe, using HDAC4 and 7 as examples, that class IIa HDACs exhibit nuclear-cytoplasmic trafficking in reprogramming, being mostly cytoplasmic in donor fibroblasts and intermediate cells but translocating to the nucleus in iPSCs. Importantly, over-expressing a mutant form of HDAC4 or 7 that becomes trapped in the nucleus enhances the early phase of reprogramming but is deleterious afterwards. The latter effect is mediated through binding to the exogenous reprogramming factors at pluripotency loci, and the subsequent recruitment of NCoR/SMRT co-repressors. Thus, our findings uncover a context-dependent function of class IIa HDACs in reprogramming and further reinforce the idea that recruitment of co-repressors by the exogenous factors is a major obstacle for reactivating the pluripotency network in this process.

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IIa类组蛋白去乙酰化酶的核细胞质穿梭调节体细胞重编程
IIa类组蛋白去乙酰化酶(hdac)是hdac的一个亚家族,在发育和成人组织稳态中具有重要功能。与其他hdac不同,它们缺乏催化功能,并结合转录因子募集转录共调节因子,主要是核受体共抑制因子(NCoR)/类视黄醇和甲状腺激素受体(SMRT)沉默介质等共抑制因子。IIa类hdac通过抑制前间充质转录因子myocyte enhancer factor 2 (MEF2)的功能,促进小鼠体细胞重编程为诱导多能干细胞(iPSCs), MEF2在这一过程中上调。在这里,我们以HDAC4和hdac7为例,描述了IIa类hdac在重编程中表现出核-细胞质运输,在供体成纤维细胞和中间细胞中主要是细胞质,但在iPSCs中转移到细胞核中。重要的是,过度表达被困在细胞核中的突变形式HDAC4或7增强了重编程的早期阶段,但之后是有害的。后一种效应是通过在多能性位点与外源重编程因子结合,以及随后NCoR/SMRT共抑制因子的募集来介导的。因此,我们的研究结果揭示了IIa类hdac在重编程中的上下文依赖功能,并进一步强化了外源因子募集共抑制因子是在这一过程中重新激活多能性网络的主要障碍的观点。
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来源期刊
Cell Regeneration
Cell Regeneration Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
5.80
自引率
0.00%
发文量
42
审稿时长
35 days
期刊介绍: Cell Regeneration aims to provide a worldwide platform for researches on stem cells and regenerative biology to develop basic science and to foster its clinical translation in medicine. Cell Regeneration welcomes reports on novel discoveries, theories, methods, technologies, and products in the field of stem cells and regenerative research, the journal is interested, but not limited to the following topics: ◎ Embryonic stem cells ◎ Induced pluripotent stem cells ◎ Tissue-specific stem cells ◎ Tissue or organ regeneration ◎ Methodology ◎ Biomaterials and regeneration ◎ Clinical translation or application in medicine
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