首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Salmonella pathogenesis reveals that BMP signaling regulates blood cell homeostasis and immune responses in Drosophila
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Salmonella pathogenesis reveals that BMP signaling regulates blood cell homeostasis and immune responses in Drosophila

机译:沙门氏菌的发病机理表明BMP信号调节果蝇的血细胞稳态和免疫反应

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摘要

Intercellular signaling by bone morphogenetic proteins (BMPs) regulates developmental decisions in virtually all animals. Here, we report that Decapentaplegic (Dpp; a Drosophila BMP family member) plays a role in blood cell homeostasis and immune responses by regulating a transcription factor cascade. The cascade begins with Dpp repression of Zfh1, continues with Zfh1 activation of Serpent (Srp; a GATA factor), and terminates with Srp activation of U-shaped (Ush) in hematopoietic cells. Hyperactivation of Zfh1, Srp, and Ush in dpp mutants leads to hyperplasia of plasmatocytes. Salmonella challenge revealed that in dpp mutants the misregu-lation of this cascade also prevents the generation of lamellocytes. These findings support the hypothesis that Ush participates in a switch between plasmatocyte and lamellocyte fate in a common precursor and further suggests a mechanism for how all blood cell types can arise from a single progenitor. These results also demonstrate that combining Drosophila and Salmonella genetics can provide novel opportunities for advancing our knowledge of hematopoiesis and innate immunity.
机译:骨形态发生蛋白(BMP)的细胞间信号传导调节了几乎所有动物的发育决定。在这里,我们报告Decapentaplegic(Dpp;果蝇BMP家庭成员)通过调节转录因子的级联在血细胞稳态和免疫应答中发挥作用。级联反应以Dpp抑制Zfh1开始,以Zfh1激活蛇(Srp; GATA因子)继续,并以造血细胞中U形(Ush)的Srp激活终止。 dpp突变体中Zfh1,Srp和Ush的过度活化导致浆细胞增生。沙门氏菌挑战表明,在dpp突变体中,这种级联反应的错误调节也阻止了层状细胞的产生。这些发现支持以下假设:Ush参与了共同前体中浆细胞和层状细胞命运之间的转换,并进一步提出了一个单一祖细胞如何产生所有血细胞类型的机制。这些结果还表明,将果蝇和沙门氏菌遗传学结合可以为提高我们对造血功能和先天免疫的认识提供新的机会。

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