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一种唾液糖肽抑制剂对生长相关基因表达和细胞周期同步的调节作用

Modulation of growth-related gene expression and cell cycle synchronization by a sialoglycopeptide inhibitor.

作者信息

Fattaey H K, Bascom C C, Johnson T C

机构信息

Division of Biology, Kansas State University, Manhattan 66506.

出版信息

Exp Cell Res. 1991 May;194(1):62-8. doi: 10.1016/0014-4827(91)90130-m.

Abstract

When an 18-kDa cell surface sialoglycopeptide (SGP), isolated from intact bovine cerebral cortex cells, was incubated with exponentially growing Swiss 3T3 cells, cell proliferation was efficiently arrested. The inhibition was totally reversible since after removal of the SGP the arrested cells resumed their progress in the cell cycle in a synchronized manner for at least two divisions. Readdition of the GSP 4 h after reversal of the inhibition did not, however, affect the commitment of the cells to advance through metaphase, although progress through the cell cycle was once again inhibited after the cells reentered the G1 phase. The efficient nature of the SGP-mediated cell cycle arrest in G1 provided us with a basis to examine potential changes in the expression of several competence genes, and genes associated with mid and late G1, that have been implicated in cell cycle progression. Upon serum stimulation of quiescent Swiss 3T3 cells, the induction of c-myc and c-fos expression was not influenced by the SGP at concentrations highly inhibitory to cell cycling. Expression of JE was induced by serum, and the presence of the SGP had little effect on the expression of this growth-related gene. KC expression was not appreciably stimulated by serum although, surprisingly, the addition of the SGP resulted in a significant increase in expression. In addition, we learned that the SGP did not alter expression of ornithine decarboxylase, c-ras, or thymidine kinase, which are induced later than the genes associated with the initial stages of competence.

摘要

从完整的牛大脑皮质细胞中分离出的一种18kDa细胞表面唾液酸糖肽(SGP),与呈指数生长的瑞士3T3细胞一起孵育时,细胞增殖被有效阻滞。这种抑制是完全可逆的,因为去除SGP后,被阻滞的细胞以同步方式在细胞周期中恢复进程,至少可进行两轮分裂。然而,在抑制作用逆转4小时后重新添加GSP,虽然细胞重新进入G1期后细胞周期进程再次被抑制,但这并未影响细胞进入中期的进程。SGP介导的G1期细胞周期阻滞的高效特性为我们提供了一个基础,来研究几种与细胞能力相关的基因以及与G1期中期和后期相关的基因的表达潜在变化,这些基因与细胞周期进程有关。在血清刺激静止的瑞士3T3细胞时,在对细胞周期具有高度抑制作用的浓度下,SGP对c-myc和c-fos表达的诱导没有影响。JE的表达由血清诱导,SGP的存在对这个与生长相关的基因的表达影响很小。KC的表达虽然未被血清明显刺激,但令人惊讶的是,添加SGP导致其表达显著增加。此外,我们了解到SGP不会改变鸟氨酸脱羧酶、c-ras或胸苷激酶的表达,这些基因的诱导发生在与细胞能力初始阶段相关的基因之后。

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