Jones R E, Moscona A A
J Cell Biol. 1974 Jun;61(3):688-700. doi: 10.1083/jcb.61.3.688.
The analogue of cytidine, cytosine arabinoside (Ara-C), elicited a significant increase in the level of glutamine synthetase (GS) in embryonic chick neural retina in the absence of the steroid inducer of the enzyme. The increase was due to de novo synthesis of GS and was mediated by RNA which accumulated in the presence of the effective concentration of Ara-C. Accumulation of GS did not result from the inhibition of DNA synthesis for which Ara-C is best known. This new effect of Ara-C involves differential suppression of macromolecular synthesis in this system: the concentration of Ara-C which caused maximum GS accumulation suppressed overall protein and RNA syntheses 65-75% without inhibiting the transcription and translation of templates essential for GS synthesis. Withdrawal of Ara-C resulted in restoration of RNA synthesis and cessation of GS accumulation, even though preformed templates for the enzyme were present; however, if all RNA synthesis was arrested with actinomycin D at the time of Ara-C withdrawal, GS continued to accumulate. The results are consistent with the hypothesis that Ara-C differentially affects the activity of structural and regulatory genes involved in the regulation of GS levels in the retina: Ara-C allows transcription of the enzyme-specific templates, but reversibly inhibits the expression of regulatory genes which limit the accumulation of GS.
胞苷类似物阿糖胞苷(Ara-C)在没有该酶的类固醇诱导剂的情况下,可使胚胎鸡神经视网膜中的谷氨酰胺合成酶(GS)水平显著升高。这种升高是由于GS的从头合成,并且由在有效浓度的Ara-C存在下积累的RNA介导。GS的积累并非源于阿糖胞苷最为人所知的对DNA合成的抑制作用。Ara-C的这种新作用涉及该系统中大分子合成的差异性抑制:导致GS积累达到最大值的Ara-C浓度可抑制总体蛋白质和RNA合成65%-75%,而不抑制GS合成所必需的模板的转录和翻译。撤去Ara-C会导致RNA合成恢复以及GS积累停止,即便该酶的预制模板仍然存在;然而,如果在撤去Ara-C时用放线菌素D使所有RNA合成停止,GS会继续积累。这些结果与以下假说一致:Ara-C差异性地影响参与视网膜中GS水平调节的结构基因和调控基因的活性:Ara-C允许酶特异性模板的转录,但可逆地抑制限制GS积累的调控基因的表达。