Divergent regulation of the key enzymes of polyamine metabolism by chiral α-methylated polyamine analogues

Author:

Hyvönen Mervi T.1,Howard Michael T.2,Anderson Christine B.2,Grigorenko Nikolay3,Khomutov Alex R.3,Vepsäläinen Jouko4,Alhonen Leena1,Jänne Juhani1,Keinänen Tuomo A.1

Affiliation:

1. Department of Biotechnology and Molecular Medicine, A.I. Virtanen Institute for Molecular Sciences, Biocenter Kuopio, University of Kuopio, Kuopio 70210, Finland

2. Department of Human Genetics, University of Utah, Salt Lake City, UT 84112, U.S.A.

3. Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow 119991, Russia

4. Laboratory of Chemistry, Department of Biosciences, Biocenter Kuopio, University of Kuopio, Kuopio 70210, Finland

Abstract

The natural polyamines are ubiquitous multifunctional organic cations which play important roles in regulating cellular proliferation and survival. Here we present a novel approach to investigating polyamine functions by using optical isomers of MeSpd (α-methylspermidine) and Me2Spm (α,ω-bismethylspermine), metabolically stable functional mimetics of natural polyamines. We studied the ability of MeSpd and Me2Spm to alter the normal polyamine regulation pathways at the level of polyamine uptake and the major control mechanisms known to affect the key polyamine metabolic enzymes. These include: (i) ODC (ornithine decarboxylase), which catalyses the rate-limiting step of polyamine synthesis; (ii) ODC antizyme, an inhibitor of ODC and polyamine uptake; (iii) SSAT (spermidine/spermine N1-acetyltransferase), the major polyamine catabolic enzyme; and (iv) AdoMetDC (S-adenosyl-L-methionine decarboxylase), which is required for the conversion of putrescine into spermidine, and spermidine into spermine. We show that the stereoisomers differ in their cellular uptake and ability to downregulate ODC and AdoMetDC, and to induce SSAT. These effects are mediated by the ability of the enantiomers to induce +1 ribosomal frameshifting on ODC antizyme mRNA, to suppress the translation of AdoMetDC uORF (upstream open reading frame) and to regulate the alternative splicing of SSAT pre-mRNA. The unique effects of chiral polyamine analogues on polyamine metabolism may offer novel possibilities for studying the physiological functions, control mechanisms, and targets of the natural polyamines, as well as advance therapeutic drug development in cancer and other human health-related issues.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference40 articles.

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3. Methyl glyoxal bis(guanylhydrazone) as a potent inhibitor of mammalian and yeast S-adenosylmethionine decarboxylases;Williams-Ashman;Biochem. Biophys. Res. Commun.,1972

4. 5′-{[(Z)-4-amino-2- butenyl]melthylamino}-5′-deoxyadenosine: a potent enzyme-activated irreversible inhibitor of S-adenosyl-L-methionione decarboxylase from Escherichia coli;Casara;J. Am. Chem. Soc.,1989

5. A phase II study of the polyamine analog N1,N11-diethylnorspermine (DENSpm) daily for five days every 21 days in patients with previously treated metastatic breast cancer;Wolff;Clin. Cancer Res.,2003

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