Ndjonka Dieudonne, Zou Yu, Bi Xiangdong, Woster Patrick, Walter Rolf D, Lüersen Kai
Department of Biochemical Parasitology, Bernhard Nocht Institute for Tropical Medicine, Bernhard-Nocht-Str. 74, D-20359 Hamburg, Germany.
Biol Chem. 2003 Aug;384(8):1195-201. doi: 10.1515/BC.2003.132.
S-Adenosylmethionine decarboxylase (AdoMetDC) is a key enzyme in polyamine biosynthesis. In many eukaryotes its activity is stimulated specifically by putrescine. The AdoMetDC of the filarial parasite Onchocerca volvulus, however, is not only stimulated by putrescine but also by the naturally occuring polyamines spermidine and spermine. Several diamines, acetylated polyamines and polyamine analogues were used to analyse what molecular prerequisites are needed to stimulate nematode AdoMetDC activity. In the absence of an activator, the O. volvulus enzyme exhibits an extremely low specific activity. This fact, together with the unspecificity of activator binding, was thought to be useful for a new strategy to inhibit nematode AdoMetDC activity. Therefore, different polyamine analogues were tested as competitive inhibitors towards the stimulatory effect putrescine has on the O. volvulus and, in comparison, on the Caenorhabditis elegans and human AdoMetDC. Bis(aralkyl)- and bis(alkyl)-substituted polyamine analogues with a 3-7-3 backbone were found to inhibit AdoMetDC activities, however, probably without interfering with the putrescine stimulation. The best inhibitor, BW-1, was about 10-fold more effective against O. volvulus AdoMetDC than against the human enzyme. Unexpectedly, BW-1 was determined to be a competitive inhibitor with respect to AdoMet, having a Ki value of 310 microM for the putrescine-stimulated human AdoMetDC. Furthermore, we show for the O. volvulus and the human enzyme that the degree of inhibition by BW-1 depends on the actual putrescine concentration.
S-腺苷甲硫氨酸脱羧酶(AdoMetDC)是多胺生物合成中的关键酶。在许多真核生物中,其活性受到腐胺的特异性刺激。然而,丝虫寄生虫旋盘尾丝虫的AdoMetDC不仅受到腐胺的刺激,还受到天然存在的多胺亚精胺和精胺的刺激。使用了几种二胺、乙酰化多胺和多胺类似物来分析刺激线虫AdoMetDC活性需要哪些分子前提条件。在没有激活剂的情况下,旋盘尾丝虫酶表现出极低的比活性。这一事实,连同激活剂结合的非特异性,被认为对抑制线虫AdoMetDC活性的新策略有用。因此,测试了不同的多胺类似物作为对腐胺对旋盘尾丝虫以及相比之下对秀丽隐杆线虫和人类AdoMetDC的刺激作用的竞争性抑制剂。发现具有3-7-3主链的双(芳烷基)和双(烷基)取代的多胺类似物可抑制AdoMetDC活性,然而,可能不会干扰腐胺的刺激作用。最佳抑制剂BW-1对旋盘尾丝虫AdoMetDC的抑制效果比对人类酶的抑制效果高约10倍。出乎意料的是,BW-1被确定为相对于AdoMet的竞争性抑制剂,对腐胺刺激 的人类AdoMetDC的Ki值为310 microM。此外,我们表明对于旋盘尾丝虫和人类酶,BW-1的抑制程度取决于实际的腐胺浓度。