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PMID: 25367752 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Review

Evolution of proline biosynthesis: enzymology, bioinformatics, genetics, and transcriptional regulation.

Biological reviews of the Cambridge Philosophical Society ·Vol. 90 ·No. 4 ·2015-11-00 ·Pages 1065-99

Fichman Y, Gerdes SY, Kovács H, Szabados L, Zilberstein A, Csonka LN

Abstract

Proline is not only an essential component of proteins but it also has important roles in adaptation to osmotic and dehydration stresses, redox control, and apoptosis. Here, we review pathways of proline biosynthesis in the three domains of life. Pathway reconstruction from genome data for hundreds of eubacterial and dozens of archaeal and eukaryotic organisms revealed evolutionary conservation and variations of this pathway across different taxa. In the most prevalent pathway of proline synthesis, glutamate is phosphorylated to γ-glutamyl phosphate by γ-glutamyl kinase, reduced to γ-glutamyl semialdehyde by γ-glutamyl phosphate reductase, cyclized spontaneously to Δ(1)-pyrroline-5-carboxylate and reduced to proline by Δ(1)-pyrroline-5-carboxylate reductase. In higher plants and animals the first two steps are catalysed by a bi-functional Δ(1) -pyrroline-5-carboxylate synthase. Alternative pathways of proline formation use the initial steps of the arginine biosynthetic pathway to ornithine, which can be converted to Δ(1)-pyrroline-5-carboxylate by ornithine aminotransferase and then reduced to proline or converted directly to proline by ornithine cyclodeaminase. In some organisms, the latter pathways contribute to or could be fully responsible for the synthesis of proline. The conservation of proline biosynthetic enzymes and significance of specific residues for catalytic activity and allosteric regulation are analysed on the basis of protein structural data, multiple sequence alignments, and mutant studies, providing novel insights into proline biosynthesis in organisms. We also discuss the transcriptional control of the proline biosynthetic genes in bacteria and plants.

Keywords
ornithine δ-aminotransferase osmotic stress proline Δ1-pyrroline-5-carboxylate reductase Δ1-pyrroline-5-carboxylate synthase γ-glutamyl kinase γ-glutamyl phosphate reductase
MeSH Terms
Archaea/metabolism Bacteria/metabolism Biological Evolution Eukaryota/metabolism Gene Expression Regulation Proline/biosynthesis
Chemicals
Proline
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Fichman Yosef
Department of Molecular Biology and Ecology of Plants, Tel-Aviv University, Tel-Aviv 6997803, Israel.
Gerdes Svetlana Y
Mathematics and Computer Science Division, Argonne National Laboratory, Argonne, IL, 60439, U.S.A.
Kovács Hajnalka
Institute of Plant Biology, Biological Research Centre, 6726 Szeged, Hungary.
Szabados László
Institute of Plant Biology, Biological Research Centre, 6726 Szeged, Hungary.
Zilberstein Aviah
Department of Molecular Biology and Ecology of Plants, Tel-Aviv University, Tel-Aviv 6997803, Israel.
Csonka Laszlo N
Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, U.S.A.
Article Info
Journal
Biological reviews of the Cambridge Philosophical Society
Abbr.
Biol Rev Camb Philos Soc
ISSN
1469-185X
Published
2015-11-00
Epub
2014-00-04
Pages
1065-99
Language
English
Region
England
NLM ID
0414576
Subset
IM
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