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奎宁可抑制克隆化T细胞的增殖及特定蛋白质的合成。

Cloned T-cell proliferation and synthesis of specific proteins are inhibited by quinine.

作者信息

Sabath D E, Monos D S, Lee S C, Deutsch C, Prystowsky M B

出版信息

Proc Natl Acad Sci U S A. 1986 Jul;83(13):4739-43. doi: 10.1073/pnas.83.13.4739.

Abstract

Recombinant human interleukin 2 (rIL-2) drives the proliferation of the cloned murine T-helper line L2. The initial G1 activation occurs during the first 20 hr after stimulation, with DNA synthesis (S phase) beginning approximately 20 hr after rIL-2 stimulation. Three patterns of protein synthesis were observed during G1 activation. Type I proteins (e.g., p72 and p66) were synthesized at near maximal rates as early as 4 hr after stimulation, with little change in rates of synthesis through the G1 to S phase transition. Type II proteins (e.g., p52 and p36) were detectable early after stimulation, but their rates of synthesis continued to increase throughout G1 activation, becoming maximal 24-28 hr after stimulation. Type III proteins (e.g., p93, p89, and p63) were synthesized maximally 4 or 8 hr after rIL-2 stimulation, then their rates of synthesis declined markedly to prestimulation levels. Type II proteins, p52 and p36, were shown to be correlated with cell proliferation, since their rates of synthesis were maximal while L2 cells were proliferating and declined as the cells returned to a quiescent state. The potassium channel blocker quinine inhibited cell growth and the synthesis of p52 and p36 when added 0 or 2 hr after rIL-2 stimulation but not when added 6 hr after rIL-2 stimulation. Thus, a quinine-sensitive event occurring in L2 cells between 2 and 6 hr after rIL-2 stimulation is necessary for synthesis of type II proteins, DNA synthesis, and cell proliferation.

摘要

重组人白细胞介素2(rIL-2)可驱动克隆的小鼠T辅助细胞系L2增殖。最初的G1期激活发生在刺激后的前20小时内,DNA合成(S期)大约在rIL-2刺激后20小时开始。在G1期激活过程中观察到三种蛋白质合成模式。I型蛋白质(如p72和p66)早在刺激后4小时就以接近最大速率合成,从G1期到S期转变过程中合成速率变化不大。II型蛋白质(如p52和p36)在刺激后早期即可检测到,但其合成速率在整个G1期激活过程中持续增加,在刺激后24 - 28小时达到最大值。III型蛋白质(如p93、p89和p63)在rIL-2刺激后4或8小时合成达到最大值,然后其合成速率明显下降至刺激前水平。II型蛋白质p52和p36与细胞增殖相关,因为它们的合成速率在L2细胞增殖时最大,而随着细胞恢复静止状态而下降。钾通道阻滞剂奎宁在rIL-2刺激后0或2小时添加时可抑制细胞生长以及p52和p36的合成,但在rIL-2刺激后6小时添加时则无此作用。因此,rIL-2刺激后2至6小时在L2细胞中发生的对奎宁敏感的事件对于II型蛋白质的合成、DNA合成和细胞增殖是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ccb/323817/88bcbe5ee65b/pnas00317-0167-a.jpg

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