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Chromatin characterization in Xenopus laevis cell-free egg extracts and embryos

机译:非洲爪蟾无细胞卵提取物和胚胎中的染色质鉴定

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摘要

Xenopus laevis development is marked by accelerated cell division solely supported by the proteins maternally deposited in the egg. Oocytes mature to eggs with concomitant transcriptional silencing. The unique maternal chromatin state contributing to this silencing and subsequent zygotic activation is likely established by histone post-translational modifications and histone variants. Therefore, tools for understanding the nature and function of maternal and embryonic histones are essential to deciphering mechanisms of regulation of development, chromatin assembly, and transcription. Here we describe protocols for isolating pronuclear sperm chromatin from Xenopus egg extracts and hydroxyapatite-based histone purification from this chromatin. The histones purified through this method can be directly assembled into chromatin through in vitro assembly reactions, providing a unique opportunity to biochemically dissect the effect of histone variants, histone modifications, and other factors in chromatin replication and assembly. We also describe how to isolate chromatin from staged embryos and analyze the proteins to reveal dynamic developmental histone modifications. Finally, we present protocols to measure chromatin assembly in extracts, including supercoiling and micrococcal nuclease assays. Using these approaches, analysis of maternal and zygotic histone post-translational modifications concomitant with cell-cycle and developmental transitions can be tested.
机译:非洲爪蟾的发育以细胞分裂加速为标志,仅由母体沉积在卵中的蛋白质支持。卵母细胞随着卵的转录沉默而成熟。促成这种沉默和随后的合子激活的独特的母体染色质状态可能是由组蛋白翻译后修饰和组蛋白变体建立的。因此,了解母体和胚胎组蛋白性质和功能的工具对于破译发育,染色质组装和转录调控机制至关重要。在这里,我们描述了从非洲爪蟾卵提取物中分离原核精子染色质和从该染色质中纯化基于羟磷灰石的组蛋白的方案。通过这种方法纯化的组蛋白可以通过体外组装反应直接组装成染色质,为生化分析组蛋白变体,组蛋白修饰和染色质复制和组装中的其他因素提供了独特的机会。我们还描述了如何从分期胚胎中分离染色质并分析蛋白质以揭示动态发育组蛋白修饰。最后,我们介绍了测量提取物中染色质组装的方案,包括超螺旋和微球菌核酸酶测定。使用这些方法,可以测试对母体和合子组蛋白翻译后修饰以及细胞周期和发育转变的分析。

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