Kovács A L, Gordon P B, Grotterød E M, Seglen P O
Department of Cell Biology, Institute for Cancer Research, The Norwegian Radium Hospital, Montebello, Oslo.
Biol Chem. 1998 Nov;379(11):1341-7. doi: 10.1515/bchm.1998.379.11.1341.
Autophagy, measured in isolated rat hepatocytes as the sequestration of electroinjected [3H]raffinose, was moderately (17%) inhibited by adenosine (0.4 mM) alone, but more strongly (85%) in the presence of the adenosine deaminase inhibitor, 2'-deoxycoformycin (50 microM), suggesting that metabolic deamination of adenosine limited its inhibitory effectiveness. The adenosine analogs, 6-methylmercaptopurine riboside and N6,N6-dimethyladenosine, inhibited autophagy by 89% and 99%, respectively, at 0.5 mM, probably reflecting the adenosine deaminase-resistance of their 6-substitutions. 5-Iodotubercidin (10 microM), an adenosine kinase inhibitor, blocked the conversion of adenosine to AMP and largely abolished the inhibitory effects of both adenosine and its analogs, indicating that AMP/nucleotide formation was required for inhibition of autophagy. Inhibition by adenosine of autophagic protein degradation, measured as the release of [14C]valine from prelabelled protein, was similarly potentiated by deoxycoformycin and prevented by iodotubercidin. Inhibition of autophagy by added AMP, ADP or ATP (0.3-1 mM) was, likewise, potentiated by deoxycoformycin and prevented by iodotubercidin, suggesting dephosphorylation to adenosine and intracellular re-phosphorylation to AMP. Suppression of autophagy by AMP may be regarded as a feedback inhibition of autophagic RNA degradation, or as an aspect of the general down-regulation of energy-requiring processes that occurs under conditions of ATP depletion, when AMP levels are high.
自噬作用在分离的大鼠肝细胞中通过对电注射的[3H]棉子糖的隔离来测定,单独使用腺苷(0.4 mM)时受到中度抑制(17%),但在腺苷脱氨酶抑制剂2'-脱氧助间型霉素(50 microM)存在的情况下抑制作用更强(85%),这表明腺苷的代谢脱氨作用限制了其抑制效果。腺苷类似物6-甲基巯基嘌呤核苷和N6,N6-二甲基腺苷在0.5 mM时分别抑制自噬作用89%和99%,这可能反映了其6-取代基对腺苷脱氨酶的抗性。5-碘结核菌素(10 microM),一种腺苷激酶抑制剂,阻断了腺苷向AMP的转化,并基本消除了腺苷及其类似物的抑制作用,表明自噬作用的抑制需要AMP/核苷酸的形成。以[14C]缬氨酸从预先标记的蛋白质中释放来衡量,腺苷对自噬性蛋白质降解的抑制作用同样被脱氧助间型霉素增强,并被碘结核菌素阻止。同样,添加的AMP、ADP或ATP(0.3 - 1 mM)对自噬作用的抑制被脱氧助间型霉素增强,并被碘结核菌素阻止,这表明它们会脱磷酸化为腺苷并在细胞内重新磷酸化为AMP。AMP对自噬作用的抑制可被视为对自噬性RNA降解的反馈抑制,或者是在ATP耗竭、AMP水平升高的条件下发生的对能量需求过程的普遍下调的一个方面。