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涡虫 Schmidtea mediterranea 中的组蛋白修饰和再生。

Histone modifications and regeneration in the planarian Schmidtea mediterranea.

机构信息

Department of Plant Pathology & Microbiology, University of California-Riverside, California, USA; Institute for Integrative Genome Biology, University of California-Riverside, California, USA; Department of Botany & Plant Sciences, University of California-Riverside, California, USA.

Howard Hughes Medical Institute & Stowers Institute for Medical Research, Kansas City, Missouri, USA.

出版信息

Curr Top Dev Biol. 2014;108:71-93. doi: 10.1016/B978-0-12-391498-9.00004-8.

Abstract

The freshwater planarian Schmidtea mediterranea has emerged as a powerful model system for studying regeneration and adult stem cell (ASC) biology. This is largely due to the developmental plasticity of these organisms and the abundant distribution and experimental accessibility of their ASCs. Techniques such as whole mount in situ hybridization, dsRNA-mediated interference, halogenated thymidine analogs for defining cell lineages, and fluorescence-activated cell sorting among other methods, have allowed researchers to interrogate the biology and attendant pluripotent stem cells of these animals in great detail. Therefore, it has now become possible to interrogate and define the roles that epigenetic states may play in regulating ASCs, and by extension, regeneration proper. Here, we provide a primer on the types and number of histone families found in S. mediterranea, known as epigenetic marks of these molecules and a survey of epigenetic modifying enzymes encoded by the planarian genome. We also review experimental evidence indicating that such modifications may in fact play key roles in determining the activities of planarian stem cells.

摘要

淡水星虫 Schmidtea mediterranea 已成为研究再生和成人干细胞 (ASC) 生物学的强大模型系统。这在很大程度上要归功于这些生物体的发育可塑性以及 ASC 的丰富分布和实验可及性。原位杂交、dsRNA 介导的干扰、卤代胸腺嘧啶类似物用于定义细胞谱系以及荧光激活细胞分选等技术,使研究人员能够详细研究这些动物的生物学和多能干细胞。因此,现在已经有可能探究和定义表观遗传状态在调节 ASC 中的作用,以及更广泛地说,在调节再生中的作用。在这里,我们提供了一个关于在 S. mediterranea 中发现的组蛋白家族的类型和数量的入门指南,这些组蛋白家族被称为这些分子的表观遗传标记,并对星虫基因组编码的表观遗传修饰酶进行了调查。我们还回顾了实验证据,表明这些修饰实际上可能在决定星状干细胞的活性方面发挥关键作用。

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