five

Noncanonical post-transcriptional feedback between microRNA and messenger RNA enables bistability and governs robust cell fate decisions

收藏
NIAID Data Ecosystem2026-03-12 收录
下载链接:
https://www.ncbi.nlm.nih.gov/sra/SRP277028
下载链接
链接失效反馈
官方服务:
资源简介:
Positive feedback driven by transcriptional regulation has long been considered a key mechanism underlying cell lineage segregation during embryogenesis. Using the developing spinal cord as a paradigm, we found that canonical, transcription-driven feedback cannot explain robust lineage segregation of motor neuron subtypes marked by two cardinal factors, Hoxa5 and Hoxc8. We propose a feedback mechanism involving elementary microRNA-mRNA reaction circuits that differ from known feedback loop-like structures. Strikingly, we show that a wide range of biologically-plausible post-transcriptional regulatory parameters are sufficient to generate bistable switches, a hallmark of positive feedback. Through mathematical analysis, we explain intuitively the hidden source of this feedback. Using embryonic stem cell differentiation and mouse genetics, we corroborate that microRNA-mRNA circuits govern tissue boundaries and hysteresis upon motor neuron differentiation with respect to transient morphogen signals. Our findings reveal a previously underappreciated feedback mechanism that may have widespread functions in cell fate decisions and tissue patterning. Overall design: Single cell RNA seq of e12.5 mouse spinal motor neurons at cervical segment (C2-T1). Motor neurons were labeled in GFP and sorted via FACS, pooled and loaded onto 10x Genomics Single Cell 3' Chip as a single sample.
创建时间:
2021-04-16
二维码
社区交流群
二维码
科研交流群
商业服务