Suppr超能文献

细胞通过类似静止的状态,以高比率转化为神经元。

Cells transit through a quiescent-like state to convert to neurons at high rates.

作者信息

Beitz A, Teves Jmy, Oakes C, Johnstone C, Wang N, Brickman J M, Galloway K E

出版信息

bioRxiv. 2024 Nov 25:2024.11.22.624928. doi: 10.1101/2024.11.22.624928.

Abstract

UNLABELLED

While transcription factors (TFs) provide essential cues for directing and redirecting cell fate, TFs alone are insufficient to drive cells to adopt alternative fates. Rather, transcription factors rely on receptive cell states to induce novel identities. Cell state emerges from and is shaped by cellular history and the activity of diverse processes. Here, we define the cellular and molecular properties of a highly receptive state amenable to transcription factor-mediated direct conversion from fibroblasts to induced motor neurons. Using a well-defined model of direct conversion to a post-mitotic fate, we identify the highly proliferative, receptive state that transiently emerges during conversion. Through examining chromatin accessibility, histone marks, and nuclear features, we find that cells reprogram from a state characterized by global reductions in nuclear size and transcriptional activity. Supported by globally increased levels of H3K27me3, cells enter a quiescent-like state of reduced RNA metabolism and elevated expression of REST and p27, markers of quiescent neural stem cells. From this transient state, cells convert to neurons at high rates. Inhibition of Ezh2, the catalytic subunit of PRC2 that deposits H3K27me3, abolishes conversion. Our work offers a roadmap to identify global changes in cellular processes that define cells with different conversion potentials that may generalize to other cell-fate transitions.

HIGHLIGHTS

Proliferation drives cells to a compact nuclear state that is receptive to TF-mediated conversion.Increased receptivity to TFs corresponds to reduced nuclear volumes.Reprogrammable cells display global, genome-wide increases in H3K27me3.High levels of H3K27me3 support cells' transits through a state of altered RNA metabolism.Inhibition of Ezh2 increases nuclear size, reduces the expression of the quiescence marker p27.Acute inhibition of Ezh2 abolishes motor neuron conversion.

ONE SENTENCE SUMMARY

Cells transit through a quiescent-like state characterized by global reductions in nuclear size and transcriptional activity to convert to neurons at high rates.

摘要

未标记

虽然转录因子(TFs)为指导和重新引导细胞命运提供了关键线索,但仅靠转录因子不足以驱动细胞采用替代命运。相反,转录因子依赖于感受态细胞状态来诱导新的细胞身份。细胞状态源于细胞历史和多种过程的活动,并受其塑造。在这里,我们定义了一种高度感受态的细胞和分子特性,这种状态适合转录因子介导的成纤维细胞直接转化为诱导运动神经元。使用一个明确的直接转化为有丝分裂后命运的模型,我们确定了在转化过程中短暂出现的高度增殖、感受态状态。通过检查染色质可及性、组蛋白标记和核特征,我们发现细胞从一个以核大小和转录活性整体降低为特征的状态进行重编程。在全局H3K27me3水平升高的支持下,细胞进入RNA代谢降低、静息神经干细胞标记物REST和p27表达升高的类似静止状态。从这个短暂状态,细胞以高转化率转化为神经元。抑制Ezh2(沉积H3K27me3的PRC2催化亚基)会消除转化。我们的工作提供了一个路线图,以识别细胞过程中的全局变化,这些变化定义了具有不同转化潜力的细胞,这可能推广到其他细胞命运转变。

重点

增殖将细胞驱动到一个对TF介导的转化具有感受性的紧密核状态。对TFs的感受性增加对应于核体积减小。可重编程细胞在全基因组范围内显示H3K27me3增加。高水平的H3K27me3支持细胞通过RNA代谢改变的状态。抑制Ezh2会增加核大小,降低静止标记物p27的表达。急性抑制Ezh2会消除运动神经元转化。

一句话总结

细胞通过一个以核大小和转录活性整体降低为特征的类似静止状态,以高转化率转化为神经元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee1f/11623504/a550ba1fe498/nihpp-2024.11.22.624928v1-f0002.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验