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Polyamine Catabolism Revisited: Acetylpolyamine Oxidase Plays a Minor Role due to Low Expression

Authors :
Olga N. Ivanova
Anna V. Gavlina
Inna L. Karpenko
Martin A. Zenov
Svetlana S. Antseva
Natalia F. Zakirova
Vladimir T. Valuev-Elliston
George S. Krasnov
Irina T. Fedyakina
Pavel O. Vorobyev
Birke Bartosch
Sergey N. Kochetkov
Anastasiya V. Lipatova
Dmitry V. Yanvarev
Alexander V. Ivanov
Source :
Cells, Vol 13, Iss 13, p 1134 (2024)
Publication Year :
2024
Publisher :
MDPI AG, 2024.

Abstract

Biogenic polyamines are ubiquitous compounds. Dysregulation of their metabolism is associated with the development of various pathologies, including cancer, hyperproliferative diseases, and infections. The canonical pathway of polyamine catabolism includes acetylation of spermine and spermidine and subsequent acetylpolyamine oxidase (PAOX)-mediated oxidation of acetylpolyamines (back-conversion) or their direct efflux from the cell. PAOX is considered to catalyze a non-rate-limiting catabolic step. Here, we show that PAOX transcription levels are extremely low in various tumor- and non-tumor cell lines and, in most cases, do not change in response to altered polyamine metabolism. Its enzymatic activity is undetectable in the majority of cell lines except for neuroblastoma and low passage glioblastoma cell lines. Treatment of A549 cells with N1,N11-diethylnorspermine leads to PAOX induction, but its contribution to polyamine catabolism remains moderate. We also describe two alternative enzyme isoforms and show that isoform 4 has diminished oxidase activity and isoform 2 is inactive. PAOX overexpression correlates with the resistance of cancer cells to genotoxic antitumor drugs, indicating that PAOX may be a useful therapeutic target. Finally, PAOX is dispensable for the replication of various viruses. These data suggest that a decrease in polyamine levels is achieved predominantly by the secretion of acetylated spermine and spermidine rather than by back-conversion.

Details

Language :
English
ISSN :
20734409
Volume :
13
Issue :
13
Database :
Directory of Open Access Journals
Journal :
Cells
Publication Type :
Academic Journal
Accession number :
edsdoj.2310228fff64a8eabd12fc2d6a9d26e
Document Type :
article
Full Text :
https://doi.org/10.3390/cells13131134