Metabolism of N-alkylated spermine analogues by polyamine and spermine oxidases

被引:18
|
作者
Hakkinen, Merja R. [1 ]
Hyvonen, Mervi T. [2 ]
Auriola, Seppo [3 ]
Casero, Robert A., Jr. [4 ,5 ]
Vepsalainen, Jouko [1 ]
Khomutov, Alex R. [6 ]
Alhonen, Leena [2 ]
Keinanen, Tuomo A. [2 ]
机构
[1] Univ Kuopio, Chem Lab, Dept Biosci, Bioctr Kuopio, FIN-70211 Kuopio, Finland
[2] Univ Kuopio, Dept Biotechnol & Mol Med, AI Virtanen Inst Mol Sci, Bioctr Kuopio, FIN-70211 Kuopio, Finland
[3] Univ Kuopio, Dept Pharmaceut Chem, Bioctr Kuopio, FIN-70211 Kuopio, Finland
[4] Johns Hopkins Univ, Sch Med, Dept Oncol, Baltimore, MD 21231 USA
[5] Sidney Kimmel Comprehens Canc Ctr Johns Hopkins, Baltimore, MD 21231 USA
[6] Russian Acad Sci, VA Engelhardt Mol Biol Inst, Moscow 119991, Russia
基金
芬兰科学院; 俄罗斯基础研究基金会;
关键词
Polyamines; N-alkylated polyamine analogues; Flavin-dependent amino-oxidoreductases; Spermine oxidase; Polyamine oxidase; BIS(BENZYL)POLYAMINE ANALOGS; UNDERIVATIZED POLYAMINES; PLASMODIUM-FALCIPARUM; IN-VITRO; THERAPY; CANCER; IDENTIFICATION; CHROMATOGRAPHY; PURIFICATION; DERIVATIVES;
D O I
10.1007/s00726-009-0429-2
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
N-alkylated polyamine analogues have potential as anticancer and antiparasitic drugs. However, their metabolism in the host has remained incompletely defined thus potentially limiting their utility. Here, we have studied the degradation of three different spermine analogues N,N'-bis-(3-ethylaminopropyl)butane-1,4-diamine (DESPM), N-(3-benzyl-aminopropyl)-N'-(3-ethylaminopropyl)butane-1,4-diamine (BnEtSPM) and N,N'-bis-(3-benzylaminopropyl)butane-1,4-diamine (DBSPM) and related mono-alkylated derivatives as substrates of recombinant human polyamine oxidase (APAO) and spermine oxidase (SMO). APAO and SMO metabolized DESPM to EtSPD [K (m(APAO)) = 10 mu M, k (cat(APAO)) = 1.1 s(-1) and K (m(SMO)) = 28 mu M, k (cat(SMO)) = 0.8 s(-1), respectively], metabolized BnEtSPM to EtSPD [K (m(APAO)) = 0.9 mu M, k (cat(APAO)) = 1.1 s(-1) and K (m(SMO)) = 51 mu M, k (cat(SMO)) = 0.4 s(-1), respectively], and metabolized DBSPM to BnSPD [K (m(APAO)) = 5.4 mu M, k (cat(APAO)) = 2.0 s(-1) and K (m(SMO)) = 33 mu M, k (cat(SMO)) = 0.3 s(-1), respectively]. Interestingly, mono-alkylated spermine derivatives were metabolized by APAO and SMO to SPD [EtSPM K (m(APAO)) = 16 mu M, k (cat(APAO)) = 1.5 s(-1); K (m(SMO)) = 25 mu M, k (cat(SMO)) = 8.2 s(-1); BnSPM K (m(APAO)) = 6.0 mu M, k (cat(APAO)) = 2.8 s(-1); K (m(SMO)) = 19 mu M, k (cat(SMO)) = 0.8 s(-1), respectively]. Surprisingly, EtSPD [K (m(APAO)) = 37 mu M, k (cat(APAO)) = 0.1 s(-1); K (m(SMO)) = 48 mu M, k (cat(SMO)) = 0.05 s(-1)] and BnSPD [K (m(APAO)) = 2.5 mu M, k (cat(APAO)) = 3.5 s(-1); K (m(SMO)) = 60 mu M, k (cat(SMO)) = 0.54 s(-1)] were metabolized to SPD by both the oxidases. Furthermore, we studied the degradation of DESPM, BnEtSPM or DBSPM in the DU145 prostate carcinoma cell line. The same major metabolites EtSPD and/or BnSPD were detected both in the culture medium and intracellularly after 48 h of culture. Moreover, EtSPM and BnSPM were detected from cell samples. Present data shows that inducible SMO parallel with APAO could play an important role in polyamine based drug action, i.e. degradation of parent drug and its metabolites, having significant impact on efficiency of these drugs, and hence for the development of novel N-alkylated polyamine analogues.
引用
收藏
页码:369 / 381
页数:13
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