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解析胚胎干细胞和牙髓干细胞中的表观遗传密码。

Deciphering the Epigenetic Code in Embryonic and Dental Pulp Stem Cells.

作者信息

Bayarsaihan Dashzeveg

机构信息

Institute for System Genomics and Center for Regenerative Medicine and Skeletal Development, University of Connecticut Health Center, Farmington, CT, USA.

出版信息

Yale J Biol Med. 2016 Dec 23;89(4):539-563. eCollection 2016 Dec.

Abstract

A close cooperation between chromatin states, transcriptional modulation, and epigenetic modifications is required for establishing appropriate regulatory circuits underlying self-renewal and differentiation of adult and embryonic stem cells. A growing body of research has established that the epigenome topology provides a structural framework for engaging genes in the non-random chromosomal interactions to orchestrate complex processes such as cell-matrix interactions, cell adhesion and cell migration during lineage commitment. Over the past few years, the functional dissection of the epigenetic landscape has become increasingly important for understanding gene expression dynamics in stem cells naturally found in most tissues. Adult stem cells of the human dental pulp hold great promise for tissue engineering, particularly in the skeletal and tooth regenerative medicine. It is therefore likely that progress towards pulp regeneration will have a substantial impact on the clinical research. This review summarizes the current state of knowledge regarding epigenetic cues that have evolved to regulate the pluripotent differentiation potential of embryonic stem cells and the lineage determination of developing dental pulp progenitors.

摘要

在成体和胚胎干细胞的自我更新与分化过程中,建立适当的调控回路需要染色质状态、转录调控和表观遗传修饰之间的密切合作。越来越多的研究表明,表观基因组拓扑结构为基因参与非随机染色体相互作用提供了一个结构框架,以协调细胞谱系定向过程中的复杂过程,如细胞-基质相互作用、细胞黏附和细胞迁移。在过去几年中,表观遗传景观的功能剖析对于理解大多数组织中天然存在的干细胞中的基因表达动态变得越来越重要。人牙髓中的成体干细胞在组织工程中,尤其是在骨骼和牙齿再生医学中,具有巨大的应用前景。因此,牙髓再生方面的进展可能会对临床研究产生重大影响。本综述总结了目前关于表观遗传线索的知识状态,这些线索已进化为调节胚胎干细胞的多能分化潜能以及发育中的牙髓祖细胞的谱系确定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcad/5168831/fbc2440f3589/yjbm_89_4_539_g01.jpg

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