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m6A 对于环节动物干细胞分化过程中祖细胞身份的确定是必需的。

m6A is required for resolving progenitor identity during planarian stem cell differentiation.

机构信息

The George S. Wise Faculty of Life Sciences, School of Neurobiology, Biochemistry, and Biophysics, Tel Aviv University, Tel Aviv, Israel.

Whitehead Institute for Biomedical Research, Cambridge, MA, USA.

出版信息

EMBO J. 2022 Nov 2;41(21):e109895. doi: 10.15252/embj.2021109895. Epub 2022 Aug 16.

DOI:10.15252/embj.2021109895
PMID:35971838
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9627665/
Abstract

Regeneration and tissue homeostasis require accurate production of missing cell lineages. Cell production is driven by changes to gene expression, which is shaped by multiple layers of regulation. Here, we find that the ubiquitous mRNA base-modification, m6A, is required for proper cell fate choice and cellular maturation in planarian stem cells (neoblasts). We mapped m6A-enriched regions in 7,600 planarian genes and found that perturbation of the m6A pathway resulted in progressive deterioration of tissues and death. Using single-cell RNA sequencing of >20,000 cells following perturbation of the m6A pathway, we identified an increase in expression of noncanonical histone variants, and that inhibition of the pathway resulted in accumulation of undifferentiated cells throughout the animal in an abnormal transcriptional state. Analysis of >1,000 planarian gene expression datasets revealed that the inhibition of the chromatin modifying complex NuRD had almost indistinguishable consequences, unraveling an unappreciated link between m6A and chromatin modifications. Our findings reveal that m6A is critical for planarian stem cell homeostasis and gene regulation in tissue maintenance and regeneration.

摘要

再生和组织稳态需要准确产生缺失的细胞谱系。细胞的产生是由基因表达的变化驱动的,而基因表达又受到多层次的调控。在这里,我们发现普遍存在的 mRNA 碱基修饰 m6A 对于扁形动物干细胞(neoblasts)的正确细胞命运选择和细胞成熟是必需的。我们在 7600 个扁形动物基因中绘制了 m6A 富集区域,并发现 m6A 途径的扰动导致组织逐渐恶化和死亡。通过对 m6A 途径扰动后超过 20000 个细胞的单细胞 RNA 测序,我们发现非典型组蛋白变体的表达增加,并且该途径的抑制导致未分化细胞在整个动物中异常转录状态下积累。对超过 1000 个扁形动物基因表达数据集的分析表明,染色质修饰复合物 NuRD 的抑制具有几乎相同的后果,揭示了 m6A 与染色质修饰之间未被认识的联系。我们的研究结果表明,m6A 对于扁形动物干细胞稳态和组织维持和再生中的基因调控至关重要。

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Multiplexed profiling facilitates robust m6A quantification at site, gene and sample resolution.多重分析可实现 m6A 在位点、基因和样本分辨率上的稳健定量。
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