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小鼠胚胎含有能够在培养的未转化细胞中诱导可逆性肿瘤表型的多肽生长因子。

Mouse embryos contain polypeptide growth factor(s) capable of inducing a reversible neoplastic phenotype in nontransformed cells in culture.

作者信息

Proper J A, Bjornson C L, Moses H L

出版信息

J Cell Physiol. 1982 Feb;110(2):169-74. doi: 10.1002/jcp.1041100210.

Abstract

A growth-factor-like substance capable of inducing nontransformed mouse AKR-2B, rat NRK, and EGF-receptorless mouse NR6 cells to form progressively growing colonies in soft agar was identified in acid/ethanol extracts of 17-day mouse embryos. This "mouse embryo factor" (MEF) is similar to previously described transforming growth factors in that it is capable of stimulating DNA synthesis and conferring a reversible transformed morphology on nontransformed cells in vitro. Passage of crude embryo extracts over a Bio-Gel P-60 column gave a major peak of soft agar growth-stimulating activity in the 15,000 molecular weight range with a minor peak at about 22,000. This biological activity was sensitive to treatment with either trypsin or dithiothreitol, but was unaffected by heat (56 degrees C for 30 minutes or 100 degrees C for 3 minutes), indicating that the activity is due to a heat-stable polypeptide(s) with disulfide bonds. Separation of these polypeptide(s) by chromatography on carboxymethyl cellulose revealed two peaks of soft agar growth-stimulating activity which did not cochromatograph with a peak of epidermal growth factor receptor-competing activity. The similarities of this mouse embryo-derived growth factor to previously identified transforming growth factors suggest that both fetal development and neoplastic transformation may be affected by similar mechanisms.

摘要

在17日龄小鼠胚胎的酸/乙醇提取物中,鉴定出一种生长因子样物质,它能够诱导未转化的小鼠AKR-2B细胞、大鼠NRK细胞和无表皮生长因子受体的小鼠NR6细胞在软琼脂中形成逐渐生长的集落。这种“小鼠胚胎因子”(MEF)与先前描述的转化生长因子相似,因为它能够刺激DNA合成,并在体外赋予未转化细胞可逆的转化形态。将粗胚胎提取物通过Bio-Gel P-60柱,在分子量15,000范围内出现一个主要的软琼脂生长刺激活性峰,在约22,000处有一个较小的峰。这种生物活性对胰蛋白酶或二硫苏糖醇处理敏感,但不受热(56℃ 30分钟或100℃ 3分钟)影响,表明该活性归因于具有二硫键的热稳定多肽。通过羧甲基纤维素色谱分离这些多肽,发现两个软琼脂生长刺激活性峰,它们与表皮生长因子受体竞争活性峰不同步洗脱。这种源自小鼠胚胎的生长因子与先前鉴定的转化生长因子的相似性表明,胎儿发育和肿瘤转化可能受相似机制的影响。

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