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Titlebook: D-Amino Acids; Physiology, Metaboli Tohru Yoshimura,Toru Nishikawa,Hiroshi Homma Book 2016 Springer Japan 2016 D-Serine.D-Aspartate.Brain f

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Ravi Vats,Amogh Mannekote,Deepak D. Rao animals. A large amount of .serine is known to be present in the mammalian brains. .Serine is a co-agonist of .-methyl-.aspartate-subtype glutamate receptors (NMDARs) and potentiates NMDAR activity. NMDARs are involved in many physiological and pathological processes, and an abnormal NMDAR activity
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https://doi.org/10.1007/978-981-19-6032-1r) which regulates synaptic plasticity underlying certain types of learning and memory in the central nervous system. While .Ser is abundant in the forebrain throughout life, it exists only transiently in the immature cerebellum because .amino acid oxidase (DAAO), a .Ser-degrading enzyme, begins to
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Modal Analysis of Motorcycle Handlebarhdrawal and anhedonia. Pathologic changes in the brain include cortical atrophy, loss of pyramidal cell dendritic complexity and spine density, ventricular enlargement, and reduction in intracellular mediators of neuronal plasticity. Acute blockade of N-methyl-.aspartate receptors (NMDARs) with keta
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Applications of Computational Intelligenceceptor (NMDAR). The synthesis of .serine from .-serine is catalyzed by serine racemase (SR). To date, several SR knockout (KO) mouse strains have been established to elucidate the role of the SR-.serine pathway in the regulation of NMDAR activity under both physiological and pathological conditions.
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Applications of Computational Intelligenceve been demonstrated in the central nervous system and in peripheral tissue where the amino acid is under the tight control of two enzymes responsible for its synthesis and degradation, .aspartate racemase and .aspartate oxidase, respectively. Furthermore, .aspartate intervenes on aromatase enzyme f
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