Porter C W, Pegg A E, Ganis B, Madhabala R, Bergeron R J
Grace Cancer Drug Center, Roswell Park Memorial Institute, Buffalo, NY 14263.
Biochem J. 1990 May 15;268(1):207-12. doi: 10.1042/bj2680207.
In the present study, the spermine (SPM) analogue N1N12-bis(ethyl)spermine (BESPM) is compared with SPM in its ability to regulate ornithine decarboxylase (ODC) and S-adenosyl-L-methionine decarboxylase (AdoMetDC) activities in intact L1210 cells and in the mechanism(s) by which this is accomplished. Unlike the comparable spermidine (SPD) analogue N1N8-bis(ethyl)spermidine, which regulates only ODC, BESPM suppresses both ODC and AdoMetDC activities. With 1 microM-SPM or -BESPM, near-maximal suppression of enzyme activity (i.e. less than 70%) was achieved after 2 h for ODC and 12 h for AdoMetDC. After such treatment, ODC activity fully recovered within 2-4 h, and that of AdoMetDC within 12 h, when cells were reseeded into drug-free media. It was deduced that an intracellular accumulation of BESPM or SPM equivalent to only approximately 200-450 pmol/10(6) cells was sufficient to fully invoke ODC regulatory mechanisms. Decreases in both enzyme activities after BESPM or SPM treatment were closely paralleled by concomitant decreases in the amount of enzyme protein. Since cellular ODC or AdoMetDC mRNA was not similarly decreased by either BESPM or SPM treatment, it was concluded that translational and/or post-translational mechanisms were probably responsible for enzyme regulation. In support of the former of these possibilities, it was demonstrated that both BESPM and SPM preferentially inhibited the translation in vitro of ODC and AdoMetDC relative to albumin in a reticulocyte-lysate system. On the basis of the consistent similarities between BESPM and SPM in all parameters studied, it is concluded that the analogue most likely acts by mechanisms identical with those by which SPM acts in suppressing polyamine biosynthesis.
在本研究中,将精胺(SPM)类似物N1N12 - 双(乙基)精胺(BESPM)与SPM在完整L1210细胞中调节鸟氨酸脱羧酶(ODC)和S - 腺苷 - L - 甲硫氨酸脱羧酶(AdoMetDC)活性的能力以及实现此调节的机制方面进行了比较。与仅调节ODC的类似物亚精胺(SPD)N1N8 - 双(乙基)亚精胺不同,BESPM可同时抑制ODC和AdoMetDC的活性。用1μM - SPM或 - BESPM处理时,2小时后ODC活性达到近最大抑制(即低于70%),12小时后AdoMetDC活性达到近最大抑制。经此处理后,当将细胞重新接种到无药物培养基中时,ODC活性在2 - 4小时内完全恢复,AdoMetDC活性在12小时内完全恢复。据推断,细胞内积累相当于仅约200 - 450 pmol / 10⁶细胞的BESPM或SPM就足以充分启动ODC调节机制。BESPM或SPM处理后两种酶活性的降低与酶蛋白量的相应减少密切平行。由于BESPM或SPM处理并未使细胞ODC或AdoMetDC mRNA同样减少,因此得出结论,翻译和/或翻译后机制可能负责酶的调节。为支持这些可能性中的前者,已证明在网织红细胞裂解物系统中,相对于白蛋白,BESPM和SPM均优先抑制ODC和AdoMetDC的体外翻译。基于在所有研究参数中BESPM和SPM之间一致的相似性,得出结论,该类似物最可能通过与SPM抑制多胺生物合成相同的机制起作用。