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在有丝分裂信号传导中受损的突变型集落刺激因子1受体的Myc拯救作用

Myc rescue of a mutant CSF-1 receptor impaired in mitogenic signalling.

作者信息

Roussel M F, Cleveland J L, Shurtleff S A, Sherr C J

机构信息

Department of Tumor Cell Biology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105.

出版信息

Nature. 1991 Sep 26;353(6342):361-3. doi: 10.1038/353361a0.

Abstract

The colony-stimulating factor-1 receptor (CSF-1R) mediates its pleiotropic effects through the coupling of its ligand-activated tyrosine kinase to multiple intracellular effector proteins, whose combined actions determine the magnitude and specificity of the biological response. The interaction of cytoplasmic signalling molecules with CSF-1R is mediated in part by sequence motifs flanking sites of receptor tyrosine phosphorylation. Mutation of an autophosphorylation site at tyrosine 809 in the cytoplasmic domain of human CSF-1R does not significantly reduce its ligand-stimulated tyrosine kinase activity, binding to phosphatidylinositol 3-kinase, or induction of the immediate early response genes, c-fos and junB (ref.2). Unlike cells bearing wild-type receptors, mouse NIH3T3 cells expressing mutant CSF-1R(Phe 809) were unable to grow in serum-free medium containing human recombinant CSF-1 and did not form colonies in semi-solid medium in its presence. CSF-1 induction of c-myc messenger RNA in these cells was impaired, but enforced expression of an exogenous c-myc gene restored their ability to proliferate in response to the growth factor. These studies demonstrate a receptor-mediated bifurcation of intracellular signal transduction pathways during the immediate early response and assign a central role for c-myc in CSF-1-induced mitogenesis.

摘要

集落刺激因子-1受体(CSF-1R)通过其配体激活的酪氨酸激酶与多种细胞内效应蛋白偶联来介导其多效性作用,这些效应蛋白的联合作用决定了生物学反应的强度和特异性。细胞质信号分子与CSF-1R的相互作用部分由受体酪氨酸磷酸化位点侧翼的序列基序介导。人CSF-1R细胞质结构域中酪氨酸809处自磷酸化位点的突变不会显著降低其配体刺激的酪氨酸激酶活性、与磷脂酰肌醇3激酶的结合或立即早期反应基因c-fos和junB的诱导(参考文献2)。与携带野生型受体的细胞不同,表达突变型CSF-1R(Phe 809)的小鼠NIH3T3细胞在含有重组人CSF-1的无血清培养基中无法生长,且在其存在下不能在半固体培养基中形成集落。这些细胞中CSF-1对c-myc信使RNA的诱导受损,但外源性c-myc基因的强制表达恢复了它们对生长因子作出反应而增殖的能力。这些研究证明了在立即早期反应期间细胞内信号转导途径的受体介导的分支,并确定了c-myc在CSF-1诱导的有丝分裂中的核心作用。

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