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首页> 外文期刊>Oncology Research >Expression of c-Met proto-oncogene in metastatic macrophage x melanoma fusion hybrids: implication of its possible role in MSH-induced motility.
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Expression of c-Met proto-oncogene in metastatic macrophage x melanoma fusion hybrids: implication of its possible role in MSH-induced motility.

机译:c-Met原癌基因在转移性巨噬细胞x黑色素瘤融合杂种中的表达:暗示其在MSH诱导的运动中的可能作用。

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It was shown previously that a majority of hybrids produced by in vitro fusion of normal macrophages with Cloudman S91 melanoma cells displayed macrophage-specific glycosylation, especially increased GnT-V activity, beta1,6 branch formation in glycoproteins, accompanied by enhanced metastatic potential in vivo and motility in vitro. These hybrids also express upregulated melanocortin-1 receptor (MC1-R) activity and exhibit increased motility after melanocyte-stimulating hormone (MSH) treatment. In this report, we show that MSH-mediated stimulation of motility is mediated through enhanced expression of c-Met proto-oncogene. In metastatic hybrids c-Met expression is induced by MSH, and addition of c-Met neutralizing antibody to cells inhibits MSH-induced motility but not the basal motility of the cells. Furthermore, abrogation of the chemoattractant gradient concentration by addition of hepatocyte growth factor (HGF) recombinant protein, a cognate ligand of c-Met receptor, reduces the MSH-induced effect on motility. A similar result was also obtained by the addition of blocking anti-alphaHGF antibody in the chemoattractant chamber. Again, the metastatic hybrids, but not the nonmetastatic hybrids or parental melanoma cells, showed significant motile response to rHGF chemoattractant, and that motility is further induced when cells were stimulated with MSH/isobutylmethyl xanthine (IBMX). Synergistic stimulation on motility was also observed with those hybrids treated with MSH/IBMX and when rHGF and fibronectin (FN), in combination, were used as chemoattractants. These indicate that MSH/IBMX-induced motility might involve c-Met pathways as well as extracellular matrix (ECM)/integrin pathways in a cooperative fashion. Ets-1, a transcription factor involved in the expression of c-Met, is also found to be induced in metastatic hybrids after exposure to MSH/IBMX. Implication of the result is discussed in light of the role of c-Met and its interacting proteins in the development of metastatic phenotypes and its therapeutic intervention.
机译:先前已证明,正常巨噬细胞与Cloudman S91黑色素瘤细胞体外融合产生的大多数杂种表现出巨噬细胞特异性糖基化,尤其是糖蛋白中GnT-V活性增加,β1,6分支形成增加,同时体内转移潜力增强和体外运动。这些杂种还表达上调的黑皮质素1受体(MC1-R)活性,并在刺激黑素细胞(MSH)后表现出增强的运动能力。在此报告中,我们表明,MSH介导的运动刺激是通过增强c-Met原癌基因的表达来介导的。在转移性杂种中,MSH诱导c-Met表达,向细胞中添加c-Met中和抗体抑制MSH诱导的运动,但不抑制细胞的基础运动。此外,通过添加肝细胞生长因子(HGF)重组蛋白(c-Met受体的同源配体)来取消趋化因子梯度浓度,会降低MSH诱导的运动能力。通过在趋化剂腔中添加封闭性抗-αHGF抗体也获得了相似的结果。同样,转移性杂种而不是非转移性杂种或亲代黑素瘤细胞对rHGF趋化剂表现出显着的运动反应,并且当用MSH /异丁基甲基黄嘌呤(IBMX)刺激细胞时,进一步诱导了运动性。用MSH / IBMX处理的那些杂种以及将rHGF和纤连蛋白(FN)组合用作趋化因子时,也观察到了对运动的协同刺激。这些表明MSH / IBMX诱导的运动可能以合作方式涉及c-Met途径以及细胞外基质(ECM)/整联蛋白途径。 Ets-1,一种参与c-Met表达的转录因子,也被发现在暴露于MSH / IBMX后的转移性杂种中被诱导。根据c-Met及其相互作用蛋白在转移表型的发展及其治疗干预中的作用,讨论了结果的含义。

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