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首页> 外文期刊>The FEBS journal >D-amino acids in the brain: the biochemistry of brain serine racemase.
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D-amino acids in the brain: the biochemistry of brain serine racemase.

机译:脑中的D-氨基酸:脑丝氨酸消旋酶的生物化学。

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摘要

It has been recently established that in various brain regions D-serine, the product of serine racemase, occupies the so-called 'glycine site' within N-methyl D-aspartate receptors. Mammalian brain serine racemase is a pyridoxal-5' phosphate-containing enzyme that catalyzes the racemization of L-serine to D-serine. It has also been shown to catalyze the alpha,beta-elimination of water from L-serine or D-serine to form pyruvate and ammonia. Serine racemase is included within the group of type II-fold pyridoxal-5' phosphate enzymes, together with many other racemases and dehydratases. Serine racemase was first purified from rat brain homogenates and later recombinantly expressed in mammalian and insect cells as well as in Escherichia coli. It has been shown that serine racemase is activated by divalent cations like calcium, magnesium and manganese, as well as by nucleotides like ATP, ADP or GTP. In turn, serine racemase is also strongly inhibited by reagents that react with free sulfhydryl groups such as glutathione. Several yeast two-hybrid screens for interaction partners identified the proteins glutamate receptor interacting protein, protein interacting with C kinase 1 and Golga3 to bind to serine racemase, having different effects on its catalytic activity or stability. In addition, it has also been proposed that serine racemase is regulated by phosphorylation. Thus, d-serine production in the brain is tightly regulated by various factors pointing at its physiologic importance. In this minireview, we will focus on the regulation of brain serine racemase and d-serine synthesis by the factors mentioned above.
机译:最近已经确定,在各种脑区域中,丝氨酸消旋酶的产物D-丝氨酸在N-甲基D-天冬氨酸受体中占据所谓的“甘氨酸位点”。哺乳动物脑丝氨酸消旋酶是一种含吡ido醛-5'磷酸的酶,可催化L-丝氨酸消旋为D-丝氨酸。还显示出它可以催化L-丝氨酸或D-丝氨酸中水的α,β消除,从而形成丙酮酸和氨。丝氨酸消旋酶与许多其他消旋酶和脱水酶一起被包括在II型折叠的吡ido醛5'磷酸酶组中。首先从大鼠脑匀浆中纯化丝氨酸消旋酶,然后在哺乳动物和昆虫细胞以及大肠杆菌中重组表达。已经显示丝氨酸消旋酶被二价阳离子如钙,镁和锰激活,并且被核苷酸如ATP,ADP或GTP激活。反过来,与游离巯基反应的试剂(如谷胱甘肽)也强烈抑制丝氨酸消旋酶。几个酵母双杂交筛选的相互作用伙伴确定了蛋白质谷氨酸受体相互作用的蛋白质,与C激酶1和Golga3相互作用的蛋白质与丝氨酸消旋酶结合,对其催化活性或稳定性有不同的影响。另外,还提出丝氨酸消旋酶受磷酸化作用调节。因此,大脑中d-丝氨酸的产生受到各种指示其生理重要性的因素的严格调控。在本次迷你回顾中,我们将重点讨论上述因素对脑丝氨酸消旋酶和d-丝氨酸合成的调节。

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