首页> 外文期刊>Blood: The Journal of the American Society of Hematology >c-Myb acts in parallel and cooperatively with Cebp1 to regulate neutrophil maturation in zebrafish
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c-Myb acts in parallel and cooperatively with Cebp1 to regulate neutrophil maturation in zebrafish

机译:c-Myb与Cebp1协同作用,共同调节斑马鱼中性粒细胞的成熟

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摘要

Neutrophils are the key effectors for generating innate immunity in response to pathogenic infection and tissue injury in vertebrates. Dysregulation of neutrophil development and function is known to associate with various human disorders. Yet, the genetic network that orchestrates lineage commitment, differentiation, and maturation of neutrophils remains incompletely defined. Here, we present an in vivo study to delineate the genetic program underlying neutrophil development during zebrafish embryonic myelopoiesis. We show that loss of c-Myb function has no effect on macrophages but severely impairs neutrophil terminal differentiation, resulting in the accumulation of neutrophils with unsegmented nuclei and scant granule. This neutrophilic defect, which resembles the neutrophil-specific granule deficiency (SGD) caused by the mutations in CCAAT/enhancer-binding protein epsilon (C/EBP epsilon) in humans, is attributed, at least in part, to the downregulation of the granule protein transcription. Likewise, genetic inactivation of Cebp1, the zebrafish functional homolog of mammalian C/EBP epsilon, also leads to a similar SGD-like phenotype in zebrafish. Genetic epistasis and biochemical analysis further reveals that c-Myb and Cebp1 act in parallel and cooperatively to control neutrophil differentiation by directly regulating granule protein gene transcription. Our study indicates that c-MYB is an intrinsic master regulator for neutrophil terminal differentiation and a potential target in SGD patients.
机译:中性粒细胞是在脊椎动物中响应病原体感染和组织损伤而产生先天免疫的关键效应物。嗜中性粒细胞的发育和功能失调与多种人类疾病有关。但是,协调嗜中性粒细胞的谱系承诺,分化和成熟的遗传网络仍未完全定义。在这里,我们提出了一项体内研究,以描述斑马鱼胚胎骨髓生成过程中嗜中性粒细胞发育的遗传程序。我们表明,c-Myb功能的丧失对巨噬细胞没有影响,但严重损害了嗜中性粒细胞的终末分化,导致嗜中性粒细胞的积累与未分割的核和缺乏颗粒。这种嗜中性粒细胞缺陷类似于人类中CCAAT /增强子结合蛋白epsilon(C / EBP epsilon)突变引起的嗜中性粒细胞特异性颗粒缺乏症(SGD),至少部分归因于颗粒的下调蛋白质转录。同样,哺乳动物C / EBP epsilon的斑马鱼功能同源物Cebp1的基因失活也导致斑马鱼中类似的SGD样表型。遗传上位性和生化分析进一步揭示了c-Myb和Cebp1通过直接调节颗粒蛋白基因的转录而协同协同地控制嗜中性粒细胞的分化。我们的研究表明,c-MYB是嗜中性粒细胞终末分化的固有主调节剂,并且是SGD患者的潜在靶标。

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