Decreased hippocampal homoarginine and increased nitric oxide and nitric oxide synthase levels in rats parallel training in a radial arm maze
Autor: | Guoyao Wu, Shengdi Hu, Ajinkya Sase, Gert Lubec, Gayan Nawaratna |
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Rok vydání: | 2016 |
Předmět: |
Male
0301 basic medicine medicine.medical_specialty Nitric Oxide Synthase Type III Arginine Clinical Biochemistry Hippocampal formation Nitric Oxide Hippocampus Biochemistry Nitric oxide Rats Sprague-Dawley 03 medical and health sciences chemistry.chemical_compound 0302 clinical medicine Physical Conditioning Animal Internal medicine medicine Animals Hippocampus (mythology) Maze Learning Spatial Memory Radial arm maze biology Chemistry Organic Chemistry Homoarginine Rats Nitric oxide synthase 030104 developmental biology Endocrinology biology.protein 030217 neurology & neurosurgery Lysine transport |
Zdroj: | Amino Acids. 48:2197-2204 |
ISSN: | 1438-2199 0939-4451 |
DOI: | 10.1007/s00726-016-2251-y |
Popis: | L-homoarginine (hArg) is derived from enzymatic guanidination of lysine. It was demonstrated that hArg is a substrate for nitric oxide (NO) synthesis, blocks lysine transport and inhibits the uptake of arginine into synaptosomes and modulates GABA responses ex vivo. As there is limited information on its physiological roles in the brain, the aim of the study was to show whether hippocampal or frontal lobe (FL) hArg is paralleling training in the radial arm maze (RAM) or NO formation. Hippocampi and FL of male Sprague-Dawley rats were taken from trained or yoked in a RAM. Then hArg and metabolites, NO and NO synthase (NOS) were determined by standard methods. The animals learned the task in the RAM showing significant reduction of working memory errors. hArg showed decreased levels in both brain regions of trained animals as compared to yoked animals. Nitrate plus nitrite (NOx) concentrations and NOS activity were significantly increased in hippocampi, F(1,36) = 170.5; P ≤ 0.0001 and FL, F(1,36) = 74.67; P ≤ 0.0001 of trained animals as compared to yoked animals. Levels of hArg were negatively correlated with NOx in hippocampus (r = -0.6355; P = 0.0483) but not in FL and with lysine in the FL (r = -0.6650; P = 0.0358). NOx levels were positively correlated with NOS in both the hippocampus (r = 0.7474; P = 0.0129) and FL (r = 0.9563; P ≤ 0.0001). These novel findings indicate that hArg is linked to NO formation in hippocampus but not in FL and is paralleling spatial memory in the RAM. |
Databáze: | OpenAIRE |
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