癌基因转基因小鼠:体内研究神经节苷类与癌基因关系的有效模型。

Cancer biochemistry biophysics Pub Date : 1998-10-01
I Colombo, E Monteggia, S Moretti, L Mangiarini, M G Sacco, A Villa, S Rapelli, L Clerici, B Berra
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引用次数: 0

摘要

一些研究表明,癌基因在培养细胞中的转移可重复地诱导其神经节苷脂谱的可传递性改变;将同一致癌基因转染到不同细胞系以及致癌基因产物的不同定位导致不同的神经节苷脂表达。本研究研究了大鼠新癌基因的激活形式在转基因小鼠中诱导的乳腺癌中神经节苷脂模式的改变。而对照组乳腺组织完全只含有GM3,所有肿瘤样本显示这种神经节苷脂的大量减少,GM3衍生物种(GM1, GD3, GD1a, GD1b, GT和GQ)的积累量不同,并且出现新的,尚未鉴定的含有唾液酸的分子。有趣的是,在所分析的10个肿瘤中有3个,即使在组织学上与其他肿瘤相似,但尺寸更大,在GM1, GD3和GD1a含量方面表现出显着差异。我们的数据表明,激活的癌基因也可能在体内诱导神经节苷脂模式的特异性和可传递的改变,但这种分布可能容易在肿瘤进展过程中进一步改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oncogene transgenic mice: an useful model to study in vivo the relationships between gangliosides and oncogenes.

Several studies have demonstrated that transfer of oncogenes in cultured cells reproducibly induces transmissible alterations in their ganglioside profile; the transfection of the same oncogene into different cell lines and the different localization of the oncogene product result in a different ganglioside expression. In the present study the modifications of the ganglioside pattern in mammary carcinomas induced in transgenic mice by the activated form of the rat neu oncogene have been investigated. Whereas control mammary tissues contain quite exclusively GM3, all neoplastic samples show a substantial decrease of this ganglioside, an accumulation in variable amount of GM3-derived species (GM1, GD3, GD1a, GD1b, GT and GQ) and the appearance of new, not yet identified, sialic acid containing molecules. Interestingly, three out of 10 tumors analyzed, even if histologically comparable to the others but with a larger dimension, show a significative difference as regard to the GM1, GD3 and GD1a content. Our data suggest that an activated oncogene may induce also in vivo a specific and transmissible alteration in the ganglioside pattern, but this distribution could be susceptible to further modifications during the tumor progression.

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