Polyamine homeostasis in arginase knockout mice. 2007

Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
Department of Pathology and Laboratory Medicine, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095-1732, USA.

The role of ornithine decarboxylase (ODC) in polyamine metabolism has long been established, but the exact source of ornithine has always been unclear. The arginase enzymes are capable of producing ornithine for the production of polyamines and may hold important regulatory functions in the maintenance of this pathway. Utilizing our unique set of arginase single and double knockout mice, we analyzed polyamine levels in the livers, brains, kidneys, and small intestines of the mice at 2 wk of age, the latest timepoint at which all of them are still alive, to determine whether tissue polyamine levels were altered in response to a disruption of arginase I (AI) and II (AII) enzymatic activity. Whereas putrescine was minimally increased in the liver and kidneys from the AII knockout mice, spermidine and spermine were maintained. ODC activity was not greatly altered in the knockout animals and did not correlate with the fluctuations in putrescine. mRNA levels of ornithine aminotransferase (OAT), antizyme 1 (AZ1), and spermidine/spermine-N(1)-acetyltransferase (SSAT) were also measured and only minor alterations were seen, most notably an increase in OAT expression seen in the liver of AI knockout and double knockout mice. It appears that putrescine catabolism may be affected in the liver when AI is disrupted and ornithine levels are highly reduced. These results suggest that endogenous arginase-derived ornithine may not directly contribute to polyamine homeostasis in mice. Alternate sources such as diet may provide sufficient polyamines for maintenance in mammalian tissues.

UI MeSH Term Description Entries
D007421 Intestine, Small The portion of the GASTROINTESTINAL TRACT between the PYLORUS of the STOMACH and the ILEOCECAL VALVE of the LARGE INTESTINE. It is divisible into three portions: the DUODENUM, the JEJUNUM, and the ILEUM. Small Intestine,Intestines, Small,Small Intestines
D007668 Kidney Body organ that filters blood for the secretion of URINE and that regulates ion concentrations. Kidneys
D008099 Liver A large lobed glandular organ in the abdomen of vertebrates that is responsible for detoxification, metabolism, synthesis and storage of various substances. Livers
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D009953 Ornithine-Oxo-Acid Transaminase A pyridoxal phosphate enzyme that catalyzes the formation of glutamate gamma-semialdehyde and an L-amino acid from L-ornithine and a 2-keto-acid. EC 2.6.1.13. Ornithine Aminotransferase,Ornithine Transaminase,L-Ornithine-2-Oxo-Acid Aminotransferase,L-Ornithine-2-Oxoglutarate Aminotransferase,Ornithine Ketoacid Aminotransferase,Ornithine-2-Ketoglutarate Aminotransferase,Ornithine-Keto-Acid-Transaminase,Ornithine-Ketoacid-Transaminase,Pyrroline-5-Carboxylate Synthase,Aminotransferase, L-Ornithine-2-Oxo-Acid,Aminotransferase, L-Ornithine-2-Oxoglutarate,Aminotransferase, Ornithine,Aminotransferase, Ornithine Ketoacid,Aminotransferase, Ornithine-2-Ketoglutarate,Ketoacid Aminotransferase, Ornithine,L Ornithine 2 Oxo Acid Aminotransferase,L Ornithine 2 Oxoglutarate Aminotransferase,Ornithine 2 Ketoglutarate Aminotransferase,Ornithine Keto Acid Transaminase,Ornithine Ketoacid Transaminase,Ornithine Oxo Acid Transaminase,Pyrroline 5 Carboxylate Synthase,Synthase, Pyrroline-5-Carboxylate,Transaminase, Ornithine,Transaminase, Ornithine-Oxo-Acid
D009955 Ornithine Decarboxylase A pyridoxal-phosphate protein, believed to be the rate-limiting compound in the biosynthesis of polyamines. It catalyzes the decarboxylation of ornithine to form putrescine, which is then linked to a propylamine moiety of decarboxylated S-adenosylmethionine to form spermidine. Ornithine Carboxy-lyase,Carboxy-lyase, Ornithine,Decarboxylase, Ornithine,Ornithine Carboxy lyase
D011506 Proteins Linear POLYPEPTIDES that are synthesized on RIBOSOMES and may be further modified, crosslinked, cleaved, or assembled into complex proteins with several subunits. The specific sequence of AMINO ACIDS determines the shape the polypeptide will take, during PROTEIN FOLDING, and the function of the protein. Gene Products, Protein,Gene Proteins,Protein,Protein Gene Products,Proteins, Gene
D011700 Putrescine A toxic diamine formed by putrefaction from the decarboxylation of arginine and ornithine. 1,4-Butanediamine,1,4-Diaminobutane,Tetramethylenediamine,1,4 Butanediamine,1,4 Diaminobutane
D001921 Brain The part of CENTRAL NERVOUS SYSTEM that is contained within the skull (CRANIUM). Arising from the NEURAL TUBE, the embryonic brain is comprised of three major parts including PROSENCEPHALON (the forebrain); MESENCEPHALON (the midbrain); and RHOMBENCEPHALON (the hindbrain). The developed brain consists of CEREBRUM; CEREBELLUM; and other structures in the BRAIN STEM. Encephalon
D006631 Amine Oxidase (Copper-Containing) A group of enzymes including those oxidizing primary monoamines, diamines, and histamine. They are copper proteins, and, as their action depends on a carbonyl group, they are sensitive to inhibition by semicarbazide. Diamine Oxidase,Histaminase,Amine Oxidase, Copper-Containing,Copper Amine Oxidase,Diaminobenzidine Oxidase,Semicarbazide-Sensitive Amine Oxidase,Xylylene Diamine Oxidase,Amine Oxidase, Copper,Amine Oxidase, Copper Containing,Amine Oxidase, Semicarbazide-Sensitive,Copper-Containing Amine Oxidase,Diamine Oxidase, Xylylene,Oxidase, Copper Amine,Oxidase, Copper-Containing Amine,Oxidase, Diamine,Oxidase, Diaminobenzidine,Oxidase, Semicarbazide-Sensitive Amine,Oxidase, Xylylene Diamine,Semicarbazide Sensitive Amine Oxidase

Related Publications

Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
July 2011, World journal of gastroenterology,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
January 2017, Frontiers in physiology,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
November 2004, European journal of pharmacology,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
September 2009, The Journal of endocrinology,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
March 2016, Sleep,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
January 2016, PloS one,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
November 2022, American journal of physiology. Renal physiology,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
January 1983, Acta dermato-venereologica,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
January 2006, The Journal of pharmacology and experimental therapeutics,
Joshua L Deignan, and Justin C Livesay, and Lisa M Shantz, and Anthony E Pegg, and William E O'Brien, and Ramaswamy K Iyer, and Stephen D Cederbaum, and Wayne W Grody
August 1995, Science (New York, N.Y.),
Copied contents to your clipboard!