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异染色质蛋白1β(HP1β)在多能细胞与分化细胞中具有不同的功能和不同的核分布。

Heterochromatin Protein 1β (HP1β) has distinct functions and distinct nuclear distribution in pluripotent versus differentiated cells.

作者信息

Mattout Anna, Aaronson Yair, Sailaja Badi Sri, Raghu Ram Edupuganti V, Harikumar Arigela, Mallm Jan-Philipp, Sim Kae Hwan, Nissim-Rafinia Malka, Supper Emmanuelle, Singh Prim B, Sze Siu Kwan, Gasser Susan M, Rippe Karsten, Meshorer Eran

机构信息

Department of Genetics, The Institute of Life Science and The Edmond and Lily Center for Brain Sciences The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.

Friedrich Miescher Institute for Biomedical Research, Maulbeerstrasse 66, 4058, Basel, Switzerland.

出版信息

Genome Biol. 2015 Sep 28;16:213. doi: 10.1186/s13059-015-0760-8.

Abstract

BACKGROUND

Pluripotent embryonic stem cells (ESCs) have the unique ability to differentiate into every cell type and to self-renew. These characteristics correlate with a distinct nuclear architecture, epigenetic signatures enriched for active chromatin marks and hyperdynamic binding of structural chromatin proteins. Recently, several chromatin-related proteins have been shown to regulate ESC pluripotency and/or differentiation, yet the role of the major heterochromatin proteins in pluripotency is unknown.

RESULTS

Here we identify Heterochromatin Protein 1β (HP1β) as an essential protein for proper differentiation, and, unexpectedly, for the maintenance of pluripotency in ESCs. In pluripotent and differentiated cells HP1β is differentially localized and differentially associated with chromatin. Deletion of HP1β, but not HP1α, in ESCs provokes a loss of the morphological and proliferative characteristics of embryonic pluripotent cells, reduces expression of pluripotency factors and causes aberrant differentiation. However, in differentiated cells, loss of HP1β has the opposite effect, perturbing maintenance of the differentiation state and facilitating reprogramming to an induced pluripotent state. Microscopy, biochemical fractionation and chromatin immunoprecipitation reveal a diffuse nucleoplasmic distribution, weak association with chromatin and high expression levels for HP1β in ESCs. The minor fraction of HP1β that is chromatin-bound in ESCs is enriched within exons, unlike the situation in differentiated cells, where it binds heterochromatic satellite repeats and chromocenters.

CONCLUSIONS

We demonstrate an unexpected duality in the role of HP1β: it is essential in ESCs for maintaining pluripotency, while it is required for proper differentiation in differentiated cells. Thus, HP1β function both depends on, and regulates, the pluripotent state.

摘要

背景

多能胚胎干细胞(ESCs)具有分化为各种细胞类型并自我更新的独特能力。这些特性与独特的核结构、富含活性染色质标记的表观遗传特征以及结构染色质蛋白的超动态结合相关。最近,几种与染色质相关的蛋白质已被证明可调节ESC的多能性和/或分化,但主要异染色质蛋白在多能性中的作用尚不清楚。

结果

在这里,我们确定异染色质蛋白1β(HP1β)是ESC正常分化以及维持多能性所必需的蛋白质。在多能细胞和分化细胞中,HP1β在染色质上的定位和关联存在差异。在ESCs中缺失HP1β而非HP1α会导致胚胎多能细胞的形态和增殖特征丧失,降低多能性因子的表达并导致异常分化。然而,在分化细胞中,HP1β的缺失则产生相反的效果,扰乱分化状态的维持并促进重编程为诱导多能状态。显微镜检查,生化分级分离和染色质免疫沉淀显示,HP1β在ESCs中呈弥漫性核质分布,与染色质的关联较弱且表达水平较高。与分化细胞不同,ESCs中与染色质结合的少量HP1β在外显子中富集,在分化细胞中它结合异染色质卫星重复序列和染色体中心。

结论

我们证明了HP1β作用中一个意想不到的双重性:它在ESCs中对于维持多能性至关重要,而在分化细胞中对于正常分化则是必需的。因此,HP1β的功能既依赖于多能状态,又对其进行调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9b8/4587738/0ca63547d5d0/13059_2015_760_Fig1_HTML.jpg

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