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正常细胞系和已建立细胞系杂交后纤维蛋白凝块回缩与其他转化参数的比较。

Comparison of fibrin clot retraction with other transformation parameters after hydridization of normal and established cell lines.

作者信息

Curatolo L, Azzarone B, Fally-Crépin C, Morasca L, Macieira-Coelho A

出版信息

Int J Cancer. 1983 Feb 15;31(2):249-55. doi: 10.1002/ijc.2910310219.

Abstract

The expression of transformation parameters (inhibition of cell division during cell crowding, anchorage dependence, loss of fibrin clot retractile activity and secretion of plasminogen activator) was studied in a heterospecific cellular hybrid, made between established L(TK-) cells and the normal human MRC-5 cells. The hybrid nature of the cross was confirmed by the ability to incorporate [3H]-thymidine, by growth in selective HAT medium, by the identification of human chromosomes and by the expression on the surface of 100% of hybrid cells of a human glycoprotein, which is recognized by the 4F2 monoclonal antibody. The hybrid cultures showed cell cycle inhibition which became less stringent with increasing population doublings and the loss of human chromosomes. Fibrin clot retraction and anchorage dependence were absent in spite of the presence of many human chromosomes. The two properties were present or lost simultaneously in the normal parent cells and in the transformed parent or hybrid cells respectively. The human type of plasminogen activator was secreted even with very little human genetic material left, and a complete dissociation between fibrin clot retraction and production of plasminogen activator was observed. The data strengthen the hypothesis that transformation is a multistep process that involves complex genetic control and where cells progressively express different phenotypes and escape growth control.

摘要

在由已建立的L(TK-)细胞和正常人MRC-5细胞构建的异种细胞杂交体中,研究了转化参数的表达(细胞拥挤时细胞分裂的抑制、贴壁依赖性、纤维蛋白凝块收缩活性的丧失和纤溶酶原激活物的分泌)。通过掺入[3H]-胸腺嘧啶核苷的能力、在选择性HAT培养基中的生长、人类染色体的鉴定以及100%杂交细胞表面表达一种可被4F2单克隆抗体识别的人类糖蛋白,证实了杂交的杂种性质。杂交培养物显示出细胞周期抑制,随着群体倍增数的增加和人类染色体的丢失,这种抑制变得不那么严格。尽管存在许多人类染色体,但纤维蛋白凝块收缩和贴壁依赖性均不存在。这两种特性分别在正常亲代细胞和转化的亲代细胞或杂交细胞中同时存在或缺失。即使仅剩下很少的人类遗传物质,也会分泌人类类型的纤溶酶原激活物,并且观察到纤维蛋白凝块收缩与纤溶酶原激活物产生之间完全解离。这些数据强化了这样一种假说,即转化是一个多步骤过程,涉及复杂的遗传控制,细胞在这个过程中逐渐表达不同的表型并逃避生长控制。

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