细胞生物学
细胞分化
正面反馈
转录因子
祖细胞
非正面反馈
细胞周期
细胞命运测定
生物
髓样
IRF8
细胞
干细胞
免疫学
遗传学
基因
电气工程
物理
工程类
量子力学
电压
作者
Hao Yuan Kueh,Ameya S. Champhekar,Stephen L. Nutt,Michael B. Elowitz,Ellen V. Rothenberg
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2013-07-19
卷期号:341 (6146): 670-673
被引量:249
标识
DOI:10.1126/science.1240831
摘要
Regulatory gene circuits with positive-feedback loops control stem cell differentiation, but several mechanisms can contribute to positive feedback. Here, we dissect feedback mechanisms through which the transcription factor PU.1 controls lymphoid and myeloid differentiation. Quantitative live-cell imaging revealed that developing B cells decrease PU.1 levels by reducing PU.1 transcription, whereas developing macrophages increase PU.1 levels by lengthening their cell cycles, which causes stable PU.1 accumulation. Exogenous PU.1 expression in progenitors increases endogenous PU.1 levels by inducing cell cycle lengthening, implying positive feedback between a regulatory factor and the cell cycle. Mathematical modeling showed that this cell cycle-coupled feedback architecture effectively stabilizes a slow-dividing differentiated state. These results show that cell cycle duration functions as an integral part of a positive autoregulatory circuit to control cell fate.
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