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FDC2-ER细胞中干细胞因子和促红细胞生成素增殖共信号传导的机制

Mechanisms of stem cell factor and erythropoietin proliferative co-signaling in FDC2-ER cells.

作者信息

Joneja B, Chen H C, Seshasayee D, Wrentmore A L, Wojchowski D M

机构信息

Graduate Programs in Biochemistry and Molecular Biology and in Genetics, the Department of Veterinary Science, and the Center for Gene Regulation, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Blood. 1997 Nov 1;90(9):3533-45.

PMID:9345037
Abstract

Studies of hematopoietic progenitor cell development in vivo, ex vivo, and in factor-dependent cell lines have shown that c-kit promotes proliferation through synergistic effects with at least certain type 1 cytokine receptors, including the erythropoietin (Epo) receptor. Presently, c-kit is shown to efficiently support both mitogenesis and survival in the FDCP1 cell subline, FDC2. In this system, mitogenic synergy with c-kit was observed for ectopically expressed wild-type Epo receptors (wt-ER), an epidermal growth factor (EGF) receptor/Epo receptor chimera, and a highly truncated Epo receptor construct ER-Bx1. Thus, the Epo receptor cytoplasmic box 1 subdomain appears, at least in part, to mediate mitogenic synergy with c-kit. In studies of potential effectors of this response, Jak2 tyrosine phosphorylation was shown to be induced by Epo, but not by stem cell factor (SCF). In addition and in contrast to signaling in Mo7e and BM6 cell lines, in FDC2-ER cells SCF and Epo each were shown to rapidly activate Pim 1 gene expression. Recently, roles also have been suggested for the nuclear trans-factor GATA-1 in regulating progenitor cell proliferation. In FDC2-ER cells, the ectopic expression of GATA-1 had no detectable effect on Epo inhibition of apoptosis. However, GATA-1 expression did result in a selective and marked inhibition in mitogenic responsiveness to SCF and to a decrease in c-kit transcript expression. These studies of SCF and Epo signaling in FDC2-wt-ER cells serve to functionally map the ERB1 region as a c-kit-interactive domain, suggest that Pim1 might contribute to SCF and Epo mitogenic synergy and support the notion that SCF and Epo may act in opposing ways during red cell differentiation.

摘要

对体内、体外及因子依赖细胞系中造血祖细胞发育的研究表明,c-kit通过与至少某些1型细胞因子受体(包括促红细胞生成素(Epo)受体)的协同作用促进增殖。目前,已证明c-kit能有效支持FDCP1细胞亚系FDC2的有丝分裂和存活。在该系统中,异位表达的野生型Epo受体(wt-ER)、表皮生长因子(EGF)受体/Epo受体嵌合体以及高度截短的Epo受体构建体ER-Bx1均观察到与c-kit的有丝分裂协同作用。因此,Epo受体细胞质盒1亚结构域似乎至少部分介导了与c-kit的有丝分裂协同作用。在对该反应潜在效应器的研究中,Jak2酪氨酸磷酸化显示由Epo诱导,而非干细胞因子(SCF)。此外,与Mo7e和BM6细胞系中的信号传导相反,在FDC2-ER细胞中,SCF和Epo均显示能快速激活Pim 1基因表达。最近,核转录因子GATA-1在调节祖细胞增殖中的作用也被提出。在FDC2-ER细胞中,GATA-1的异位表达对Epo抑制细胞凋亡无明显影响。然而,GATA-1的表达确实导致对SCF有丝分裂反应性的选择性和显著抑制以及c-kit转录本表达的降低。这些在FDC2-wt-ER细胞中对SCF和Epo信号传导的研究有助于在功能上确定ERB1区域为c-kit相互作用结构域,表明Pim1可能有助于SCF和Epo的有丝分裂协同作用,并支持SCF和Epo在红细胞分化过程中可能以相反方式起作用的观点。

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