Department of Cardiac Development and Remodeling, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.
German Centre for Cardiovascular Research (DZHK), Partner site Rhein-Main, Frankfurt am Main, Germany.
Methods Mol Biol. 2023;2640:413-430. doi: 10.1007/978-1-0716-3036-5_28.
Adult muscle stem cells (MuSCs), also called satellite cells, are situated under the basal lamina of myofibers in skeletal muscles. MuSCs are instrumental for postnatal muscle growth and regeneration of skeletal muscles. Under physiological conditions, the majority of MuSCs is actively maintained in a quiescent state but becomes rapidly activated during muscle regeneration, which is accompanied with massive changes in the epigenome. Moreover, aging, but also pathological conditions, such as in muscle dystrophy, results in profound changes of the epigenome, which can be monitored with different approaches. However, a better understanding of the role of chromatin dynamics in MuSCs and its function for skeletal muscle physiology and disease has been hampered by technical limitations, mostly due to the relatively low number of MuSCs but also due to the strongly condensed chromatin state of quiescent MuSCs. Traditional chromatin immunoprecipitation (ChIP) usually requires large amounts of cells and has several other shortcomings. Cleavage Under Targets and Release Using Nuclease (CUT&RUN) is a simple alternative to ChIP for chromatin profiling, providing higher efficiency and better resolution at lower costs. CUT&RUN maps genome-wide chromatin features, including genome-wide localization of transcription factor binding in small numbers of freshly isolated MuSCs, facilitating analysis of different subpopulations of MuSCs. Here we describe an optimized protocol to profile global chromatin in freshly isolated MuSCs using CUT&RUN.
成体肌肉干细胞(MuSCs),也称为卫星细胞,位于骨骼肌肌纤维的基底膜下。MuSCs 对于出生后的肌肉生长和骨骼肌的再生至关重要。在生理条件下,大多数 MuSCs 处于静止状态,但在肌肉再生过程中会迅速激活,伴随着表观基因组的大量变化。此外,衰老,以及肌肉萎缩症等病理状况,都会导致表观基因组发生深刻变化,这可以通过不同的方法来监测。然而,由于技术限制,如 MuSCs 的数量相对较少,以及静止 MuSCs 的染色质高度浓缩状态,使得 MuSCs 中的染色质动力学及其对骨骼肌生理学和疾病的功能的作用仍难以理解。传统的染色质免疫沉淀(ChIP)通常需要大量的细胞,并且存在其他几个缺点。靶向切割和释放使用核酸酶(CUT&RUN)是一种用于染色质分析的简单替代 ChIP 的方法,可在较低成本下提供更高的效率和更好的分辨率。CUT&RUN 可以绘制全基因组的染色质特征图谱,包括在少量新鲜分离的 MuSCs 中全基因组转录因子结合的定位,这有助于分析 MuSCs 的不同亚群。在这里,我们描述了一种优化的使用 CUT&RUN 对新鲜分离的 MuSCs 进行全基因组染色质分析的方案。