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A Logic-incorporated Gene Regulatory Network Deciphers Principles in Cell Fate Decisions

A Logic-incorporated Gene Regulatory Network Deciphers Principles in Cell Fate Decisions

来源:bioRxiv_logobioRxiv
英文摘要

Organisms utilize gene regulatory networks (GRNs) to make fate decisions, but the regulatory mechanisms of transcription factors (TFs) in GRNs are exceedingly intricate. A longstanding question in this field is how these tangled interactions synergistically contribute to decision-making procedures. To comprehensively understand the role of regulatory logic in cell fate decisions, we constructed a logic-incorporated GRN model and examined its behavior under two distinct driving forces (noise-driven and signal-driven). Under the noise-driven mode, we distilled the relationship among fate bias, regulatory logic, and noise profile. Under the signal-driven mode, we bridged regulatory logic and progression-accuracy trade-off, and uncovered distinctive trajectories of reprogramming influenced by logic motifs. In differentiation, we characterized a special logic-dependent priming stage by the solution landscape. Finally, we applied our findings to decipher three biological instances: hematopoiesis, embryogenesis, and trans-differentiation. Orthogonal to the classical analysis of expression profile, we harnessed noise patterns to construct the GRN corresponding to fate transition. Our work presents a generalizable framework for top-down fate-decision studies and a practical approach to the taxonomy of cell fate decisions.

Xue Gang、Zhang Xiaoyi、Li Wanqi、Zhang Zongxu、Zhang Lei、Li Zhiyuan、Zhang Di、Zhou Xiaolin、Zhang Lu

10.1101/2023.04.21.537440

细胞生物学遗传学分子生物学

Xue Gang,Zhang Xiaoyi,Li Wanqi,Zhang Zongxu,Zhang Lei,Li Zhiyuan,Zhang Di,Zhou Xiaolin,Zhang Lu.A Logic-incorporated Gene Regulatory Network Deciphers Principles in Cell Fate Decisions[EB/OL].(2025-03-28)[2025-05-19].https://www.biorxiv.org/content/10.1101/2023.04.21.537440.点此复制

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