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用激活的HRAS1癌基因转染的细胞中的甲硫氨酸代谢缺陷。

Methionine metabolism defect in cells transfected with an activated HRAS1 oncogene.

作者信息

Vanhamme L, Szpirer C

出版信息

Exp Cell Res. 1987 Mar;169(1):120-6. doi: 10.1016/0014-4827(87)90231-x.

Abstract

Methionine dependence is a metabolic defect characterized by the inability of eukaryotic cells in culture to proliferate in a medium where methionine has been replaced by its immediate metabolic precursor, homocysteine. This defect has been reported to be a specific property of diverse tumour-derived and transformed cell lines; normal cell strains grow well under the above culture conditions. The basis of methionine requirement in such cells is not known. We asked whether this defect might be controlled by activated oncogenes and in particular by the mutated (activated) HRAS1 oncogene derived from the EJ/T24 human carcinoma line. We report that this oncogene induces methionine requirement after transfection in non-transformed immortalized rat cells.

摘要

甲硫氨酸依赖性是一种代谢缺陷,其特征在于培养中的真核细胞无法在甲硫氨酸已被其直接代谢前体同型半胱氨酸替代的培养基中增殖。据报道,这种缺陷是多种肿瘤衍生和转化细胞系的一种特异性特性;正常细胞株在上述培养条件下生长良好。此类细胞中甲硫氨酸需求的基础尚不清楚。我们询问这种缺陷是否可能由激活的癌基因控制,特别是由源自EJ/T24人癌细胞系的突变(激活)HRAS1癌基因控制。我们报告称,该癌基因在转染到未转化的永生大鼠细胞后会诱导甲硫氨酸需求。

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