The Master Regulator Protein BAZ2B Can Reprogram Human Hematopoietic Lineage-Committed Progenitors into a Multipotent State

主调节蛋白 BAZ2B 可以将人类造血谱系祖细胞重新编程为多能状态

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作者:Karthik Arumugam, William Shin, Valentina Schiavone, Lukas Vlahos, Xiaochuan Tu, Davide Carnevali, Jordan Kesner, Evan O Paull, Neus Romo, Prem Subramaniam, Jeremy Worley, Xiangtian Tan, Andrea Califano, Maria Pia Cosma

Abstract

Bi-species, fusion-mediated, somatic cell reprogramming allows precise, organism-specific tracking of unknown lineage drivers. The fusion of Tcf7l1-/- murine embryonic stem cells with EBV-transformed human B cell lymphocytes, leads to the generation of bi-species heterokaryons. Human mRNA transcript profiling at multiple time points permits the tracking of the reprogramming of B cell nuclei to a multipotent state. Interrogation of a human B cell regulatory network with gene expression signatures identifies 8 candidate master regulator proteins. Of these 8 candidates, ectopic expression of BAZ2B, from the bromodomain family, efficiently reprograms hematopoietic committed progenitors into a multipotent state and significantly enhances their long-term clonogenicity, stemness, and engraftment in immunocompromised mice. Unbiased systems biology approaches let us identify the early driving events of human B cell reprogramming.

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