Beland J L, Yuille M A, Hugunin M, Zhang X M, Silverstone A E
Department of Microbiology and Immunology, SUNY Health Science Center, Syracuse 13210.
J Cell Physiol. 1990 Mar;142(3):523-32. doi: 10.1002/jcp.1041420311.
Terminal deoxynucleotidyl transferase (TdT) is a template-independent DNA polymerase that is transiently expressed during the normal development of T and B lymphocytes. Phorbol 12-myristate 13-acetate (PMA) has been reported to induce maturation-like changes, including the loss of TdT, in many leukemic cell lines. We investigated the mechanism of TdT repression by PMA in an early thymocyte-like cell line, RPMI 8402. At a concentration of 8 nM, PMA caused both repression of TdT synthesis and arrest of proliferation. At greater concentrations of PMA, these same changes initially occurred, but then cell proliferation resumed, and TdT was reexpressed. At both 8 and 160 nM PMA, TdT biosynthesis and TdT mRNA became undetectable within 8 hours, while cell proliferation and DNA synthesis were not significantly reduced until 16 hours. Growth arrest induced by serum starvation did not result in a similar reduction of TdT RNA even after 48 hours. With 160 nM PMA, TdT mRNA could be detected again by 24 hours, and proliferation resumed. Transcription run-off assays indicated that TdT RNA synthesis ceased within 1 hour after exposure to both 8 and 160 nM PMA. T cell receptor alpha (TcR alpha) RNA was induced when TdT RNA was repressed. TcR beta RNA levels were unchanged, and TcR gamma RNA was up-regulated. TdT gene repression and modulation of cell proliferation as well as induction of TcR gene expression are normal events during intrathymic T cell maturation. This cell model provides a system for analyzing the molecular regulation of these significant developmental events.
末端脱氧核苷酸转移酶(TdT)是一种不依赖模板的DNA聚合酶,在T和B淋巴细胞的正常发育过程中短暂表达。据报道,佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)可在许多白血病细胞系中诱导类似成熟的变化,包括TdT的丧失。我们研究了PMA在早期胸腺细胞样细胞系RPMI 8402中抑制TdT的机制。在浓度为8 nM时,PMA导致TdT合成的抑制和增殖的停滞。在更高浓度的PMA下,同样的变化最初会发生,但随后细胞增殖恢复,TdT重新表达。在8 nM和160 nM PMA时,8小时内TdT生物合成和TdT mRNA均无法检测到,而细胞增殖和DNA合成直到16小时才显著减少。血清饥饿诱导的生长停滞即使在48小时后也不会导致TdT RNA有类似程度的减少。使用160 nM PMA时,24小时后可再次检测到TdT mRNA,且增殖恢复。转录延伸分析表明,暴露于8 nM和160 nM PMA后1小时内TdT RNA合成停止。当TdT RNA被抑制时,T细胞受体α(TcRα)RNA被诱导。TcRβRNA水平不变,而TcRγRNA上调。TdT基因抑制、细胞增殖调节以及TcR基因表达的诱导是胸腺内T细胞成熟过程中的正常事件。该细胞模型为分析这些重要发育事件的分子调控提供了一个系统。