Distinct requirements for Stat4 and Stat6 in hematopoietic progenitor cell responses to growth factors and chemokines.

Mark H Kaplan, Hua-Chen Chang, Scott Cooper, Younghee Lee, Hal E Broxmeyer
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引用次数: 14

Abstract

Hematopoietic progenitor cell (HPC) homeostasis is critical in maintaining innate immunity and healing processes. Recently, we demonstrated that Th1 cells regulate HPC homeostasis, partly based on altered homeostasis in Stat4- and Stat6-deficient mice. To explore changes in HPC responsiveness in altered T helper cell environments, we directly examined growth factor-stimulated colony formation and chemokine-induced myelosuppression of HPC in Stat4- and Stat6-deficient bone marrow cells. Stat6-deficient cells have increased responses to the synergy between granulocyte-macrophage colony-stimulating factor (GM-CSF) and steel factor (SLF), compared to wild-type and Stat4-deficient cells. Increased responses are eliminated by in vivo depletion of CD4 cells. Whereas Stat6-deficient bone marrow cells respond to chemokine-mediated myelosuppression, Stat4-deficient bone marrow cells are refractory to the suppressive effects of chemokines. Thus, T helper cell development affects HPC homeostasis through several mechanisms, including the sensitivity to growth factor stimulation and chemokine suppression of HPC colony formation. Since Stat4 and Stat6 regulate opposing programs of T helper differentiation, there are distinct requirements for Stat4 and Stat6 in regulation of growth factor and chemokine responses of HPC.

造血祖细胞对生长因子和趋化因子的反应中对Stat4和Stat6的不同需求。
造血祖细胞(HPC)稳态是维持先天免疫和愈合过程的关键。最近,我们证明Th1细胞调节HPC稳态,部分基于Stat4和stat6缺失小鼠体内稳态的改变。为了探索在改变的T辅助细胞环境中HPC反应性的变化,我们直接检测了生长因子刺激的集落形成和趋化因子诱导的Stat4和stat6缺失骨髓细胞中HPC的骨髓抑制。与野生型和stat4缺陷细胞相比,stat6缺陷细胞对粒细胞-巨噬细胞集落刺激因子(GM-CSF)和钢铁因子(SLF)之间的协同作用的反应增加。增加的反应被体内CD4细胞的消耗所消除。stat6缺失的骨髓细胞对趋化因子介导的骨髓抑制有反应,而stat4缺失的骨髓细胞对趋化因子的抑制作用是不耐受的。因此,T辅助细胞的发育通过多种机制影响HPC稳态,包括对生长因子刺激的敏感性和HPC集落形成的趋化因子抑制。由于Stat4和Stat6调控相反的辅助性T分化程序,因此在调控HPC的生长因子和趋化因子应答中,对Stat4和Stat6有不同的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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