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血清成分诱导BALB/c 3T3细胞中的DNA合成:对启动过程的重新评估

Induction of DNA synthesis in BALB/c 3T3 cells by serum components: reevaluation of the commitment process.

作者信息

Pledger W J, Stiles C D, Antoniades H N, Scher C D

出版信息

Proc Natl Acad Sci U S A. 1977 Oct;74(10):4481-5. doi: 10.1073/pnas.74.10.4481.

Abstract

Serum contains a growth factor derived from platelets and also growth factors derived from platelet-poor plasma. Extracts of heated (100 degrees ) human platelets function synergistically with platelet-poor plasma to induce DNA synthesis in quiescent, density-inhibited BALB/c 3T3 cells. Platelet-poor plasma alone did not induce DNA synthesis. Cells exposed to platelet extracts became competent to enter the cell cycle, but the rate of entry into the S phase depended upon the concentration of platelet-poor plasma. The time required for the induction of this competent state was a function of the concentration of the platelet extract. A 2-hr exposure to 100 mug of the platelet extract at 37 degrees caused the entire cell population to become competent to enter the S phase. At 4 degrees or 25 degrees the cells did not become competent to synthesize DNA. The platelet extract-induced competent state was stable for at least 13 hr after removal of the platelet extract; however, in the absence of platelet-poor plasma, these competent cells did not progress through the cell cycle. The addition of an optimal concentration of platelet-poor plasma (5%) to these competent cells initiated cell cycle traverse with a rapid, first-order entry of cells into the S phase beginning 12 hr after addition of the plasma. The addition of a suboptimal concentration of the plasma (0.25%) did not increase the rate of cell entry into the S phase. Thus, the induction of DNA synthesis in quiescent BALB/c 3T3 cells can be resolved into at least two phases, controlled by different serum components: (i) competence, induced by the platelet-derived growth factor; and (ii) progression of competent cells into the cell cycle, mediated by factors in platelet-poor plasma.

摘要

血清中含有一种源自血小板的生长因子,以及源自乏血小板血浆的生长因子。加热至100摄氏度的人血小板提取物与乏血小板血浆协同作用,可诱导静止的、密度抑制的BALB/c 3T3细胞进行DNA合成。单独的乏血小板血浆不会诱导DNA合成。暴露于血小板提取物的细胞有能力进入细胞周期,但进入S期的速率取决于乏血小板血浆的浓度。诱导这种有能力状态所需的时间是血小板提取物浓度的函数。在37摄氏度下将细胞暴露于100微克的血小板提取物中2小时,可使整个细胞群体有能力进入S期。在4摄氏度或25摄氏度下,细胞没有能力合成DNA。去除血小板提取物后,血小板提取物诱导的有能力状态至少稳定13小时;然而,在没有乏血小板血浆的情况下,这些有能力的细胞不会完成细胞周期。向这些有能力的细胞中添加最佳浓度的乏血小板血浆(5%)可启动细胞周期进程,在添加血浆后12小时开始,细胞以快速的一级速率进入S期。添加次最佳浓度的血浆(0.25%)不会增加细胞进入S期的速率。因此,静止的BALB/c 3T3细胞中DNA合成的诱导可分为至少两个阶段,由不同的血清成分控制:(i)由血小板衍生生长因子诱导的有能力状态;(ii)有能力的细胞进入细胞周期的进程,由乏血小板血浆中的因子介导。

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