首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Colony-stimulating factor 1-mediated regulation of a chimeric c-fms/v-fms receptor containing the v-fms-encoded tyrosine kinase domain.
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Colony-stimulating factor 1-mediated regulation of a chimeric c-fms/v-fms receptor containing the v-fms-encoded tyrosine kinase domain.

机译:集落刺激因子1介导的包含v-fms编码酪氨酸激酶结构域的嵌合c-fms / v-fms受体的调节。

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摘要

A chimeric gene specifying the 308 N-terminal amino acids of the extracellular ligand binding domain of the human c-fms protooncogene joined to the remainder of the feline v-fms oncogene product encodes a functional colony-stimulating factor 1 (CSF-1) receptor. When expressed in mouse NIH 3T3 fibroblasts, the chimeric gene product was rapidly transported to the cell surface, was autophosphorylated on tyrosine only in response to human recombinant CSF-1, underwent ligand-induced but not phorbol ester-induced down-modulation, and stimulated CSF-1-dependent cell proliferation. By contrast, the C-terminally truncated glycoprotein encoded by the v-fms oncogene is partially inhibited in its transport to the plasma membrane, is constitutively phosphorylated on tyrosine, and is relatively refractory to both ligand-induced and phorbol ester-induced down-modulation. Although the v-fms oncogene can transform cells in the absence of CSF-1, its tyrosine kinase activity and turnover can be appropriately regulated by the human c-fms-encoded ligand binding domain. The results confirm that C-terminal truncation of the c-fms gene is insufficient to activate its transforming potential and suggest that an additional mutation in its distal extracellular domain is required for oncogenic activation.
机译:嵌合基因,指定人c-fms原癌基因胞外配体结合域的308 N末端氨基酸与猫v-fms癌基因产物的其余部分连接,可编码功能性集落刺激因子1(CSF-1)受体。当在小鼠NIH 3T3成纤维细胞中表达时,嵌合基因产物被快速转运至细胞表面,仅响应于人类重组CSF-1而在酪氨酸上自磷酸化,经历了配体诱导而不是佛波酯诱导的下调,并被刺激CSF-1依赖性细胞增殖。相比之下,由v-fms致癌基因编码的C端截短的糖蛋白在其向质膜的运输中被部分抑制,在酪氨酸上被组成性磷酸化,并且对配体诱导的和佛波酯诱导的下调相对较难。尽管v-fms癌基因可以在不存在CSF-1的情况下转化细胞,但其酪氨酸激酶活性和周转率可由人c-fms编码的配体结合域适当调节。结果证实,c-fms基因的C端截短不足以激活其转化潜能,并提示致癌激活需要在其远端细胞外结构域中进​​行其他突变。

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