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Updated: Jun 15, 2026

Enzymatic Cascade Reactions for the Synthesis of Chiral Amino Alcohols from L-lysine
Published on: February 16, 2018
Recurrent emergence of catalytically inactive ornithine decarboxylase homologous forms that likely have regulatory
Ivaylo P Ivanov1, Andrew E Firth, John F Atkins
1BioSciences Institute, University College Cork, Ireland.
Abstract:
Ornithine decarboxylase (ODC) catalyzes the first and rate limiting step in the biosynthesis of polyamines in most eukaryotes. Because polyamines have pleiotropic and often dramatic effects on cellular processes at both high and low concentrations, ODC expression is tightly controlled. ODC is regulated by a family of polyamine-induced proteins, antizymes, which bind to, and inactivate it. In mammals, and apparently most vertebrates, antizymes are in turn antagonized by proteins called antizyme inhibitors. Antizyme inhibitors are homologs of ODC that have lost their decarboxylation activity but have retained their ability to bind antizyme, in most cases even more tightly than ODC. We present a phylogenetic analysis of over 200 eukaryotic homologs of ODC and evaluate their potential to be either true ODCs or catalytically inactive proteins that might be analogs of the previously identified antizyme inhibitors. This analysis yielded several orthologous groups of putative novel antizyme inhibitors each apparently arising independently. In the process we also identify previously unrecognized ODC paralogs in several evolutionary branches, including a previously unrecognized ODC paralog in mammals, and we evaluate their biochemical potential based on their pattern of amino acid conservation.
Insights
Researchers identified novel antizyme inhibitors, which regulate ornithine decarboxylase (ODC) and polyamine synthesis. This study uncovers new ODC paralogs, including one in mammals, crucial for understanding cellular processes.
Area of Science:
- Biochemistry
- Molecular Biology
- Evolutionary Biology
Background:
- Ornithine decarboxylase (ODC) is key in polyamine biosynthesis and tightly regulated.
- Antizymes inhibit ODC, while antizyme inhibitors antagonize antizymes in vertebrates.
- Antizyme inhibitors are catalytically inactive ODC homologs that bind antizymes.
Purpose of the Study:
- To perform a phylogenetic analysis of over 200 eukaryotic ODC homologs.
- To identify novel antizyme inhibitors and ODC paralogs across eukaryotes.
- To evaluate the biochemical potential of identified proteins based on amino acid conservation.
Main Methods:
- Phylogenetic analysis of eukaryotic ODC homologs.
- Identification of orthologous groups and paralogs.
- Assessment of conserved amino acid patterns for biochemical potential.
Main Results:
- Discovered several independent evolutionary origins of putative novel antizyme inhibitors.
- Identified previously unrecognized ODC paralogs in various evolutionary lineages.
- Found a novel ODC paralog in mammals with potential biochemical activity.
Conclusions:
- The study reveals diverse evolutionary pathways for antizyme inhibitors.
- New ODC paralogs, including a mammalian one, expand our understanding of polyamine regulation.
- Phylogenetic analysis provides a framework for investigating ODC family protein functions.
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