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早期 T 细胞发育中的转录网络动态。

Transcriptional network dynamics in early T cell development.

机构信息

Division of Biology and Biological Engineering California Institute of Technology , Pasadena, CA, USA.

出版信息

J Exp Med. 2024 Oct 7;221(10). doi: 10.1084/jem.20230893. Epub 2024 Aug 21.

Abstract

The rate at which cells enter the T cell pathway depends not only on the immigration of hematopoietic precursors into the strong Notch signaling environment of the thymus but also on the kinetics with which each individual precursor cell reaches T-lineage commitment once it arrives. Notch triggers a complex, multistep gene regulatory network in the cells in which the steps are stereotyped but the transition speeds between steps are variable. Progenitor-associated transcription factors delay T-lineage differentiation even while Notch-induced transcription factors within the same cells push differentiation forward. Progress depends on regulator cross-repression, on breaching chromatin barriers, and on shifting, competitive collaborations between stage-specific and stably expressed transcription factors, as reviewed here.

摘要

细胞进入 T 细胞途径的速度不仅取决于造血前体细胞进入胸腺中强 Notch 信号环境的迁移速度,还取决于每个前体细胞到达后达到 T 细胞系承诺的动力学速度。Notch 在细胞中触发一个复杂的、多步骤的基因调控网络,其中步骤是定型的,但步骤之间的转换速度是可变的。与前体细胞相关的转录因子延迟 T 细胞系分化,即使在同一细胞内 Notch 诱导的转录因子推动分化向前推进时也是如此。正如这里所综述的,进展取决于调节剂的交叉抑制、突破染色质屏障以及阶段特异性和稳定表达的转录因子之间的竞争协作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/752a/11338287/234f8d02ce7c/JEM_20230893_Fig1.jpg

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