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首页> 外文期刊>Molecular genetics and metabolism >D-amino acids in the central nervous system in health and disease.
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D-amino acids in the central nervous system in health and disease.

机译:中枢神经系统中的D-氨基酸与健康和疾病有关。

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Recent evidence has shown that d-amino acids are present in animals and humans in high concentrations and fulfill specific biological functions. In the central nervous system, two d-amino acids, d-serine and d-aspartate, occur in considerable concentrations. d-Serine is synthesized and metabolized endogenously and the same might account for d-aspartate. d-Serine has been studied most extensively and was shown to play a role in excitatory amino acid metabolism, being a co-agonist of the N-methyl-d-aspartate (NMDA) receptor. Insight into d-serine metabolism is relevant for physiological NMDA receptor (NMDAr) activation and for all the disorders associated with an altered function of the NMDAr, such as schizophrenia, ischemia, epilepsy, and neurodegenerative disorders. d-Aspartate appears to play a role in development and endocrine function, but the precise function of d-aspartate and other d-amino acids in animals and humans requires further investigation. As d-amino acids play biological roles, alterations in the concentrations of d-amino acids might occur in some disorders and relate to the pathogenesis of these disorders. d-Amino acid concentrations may then not only help in the diagnostic process, but also provide novel therapeutic targets. Consequently, the presence and important roles of d-amino acids in higher organisms do not only challenge former theories on mammalian physiology, but also contribute to exciting new insights in human disease.
机译:最近的证据表明,d-氨基酸以高浓度存在于动物和人类中,并具有特定的生物学功能。在中枢神经系统中,两种d-氨基酸(d-丝氨酸和d-天门冬氨酸)的浓度很高。 d-丝氨酸是内源性合成和代谢的,d-天冬氨酸可能是相同的。 d-丝氨酸已经被最广泛地研究,并且被证明在兴奋性氨基酸代谢中起着作用,它是N-甲基-d-天冬氨酸(NMDA)受体的辅助激动剂。深入了解d-丝氨酸代谢与生理NMDA受体(NMDAr)激活以及与NMDAr功能改变有关的所有疾病(例如精神分裂症,局部缺血,癫痫和神经退行性疾病)有关。 d-天冬氨酸似乎在发育和内分泌功能中起作用,但是d-天冬氨酸和其他d-氨基酸在动物和人体内的确切功能尚需进一步研究。由于d-氨基酸发挥生物学作用,因此某些疾病中可能会发生d-氨基酸浓度的变化,并与这些疾病的发病机理有关。 d-氨基酸的浓度不仅可以帮助诊断过程,而且可以提供新的治疗靶标。因此,d-氨基酸在高等生物中的存在及其重要作用不仅挑战了哺乳动物生理学的先前理论,而且还为人类疾病的研究带来了新的见解。

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