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首页> 外文期刊>The FEBS journal >Insights into the activation of brain serine racemase by the multi-PDZ domain glutamate receptor interacting protein, divalent cations and ATP
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Insights into the activation of brain serine racemase by the multi-PDZ domain glutamate receptor interacting protein, divalent cations and ATP

机译:通过多PDZ域谷氨酸受体相互作用蛋白,二价阳离子和ATP激活脑丝氨酸消旋酶的见解

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Brain serine racemase contains pyridoxal phosphate as a prosthetic group and is known to become activated by divalent cations such as Ca2+ and Mg2+, as well as by ATP and ADP. In vivo, brain serine racemase is also activated by a multi-PSD-95/discs large/ZO-1 (PDZ) domain glutamate receptor interacting protein (GRIP) that is usually coupled to the GluR2/3 subunits of the alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid Ca2+ channel. In the present study, we analysed the mechanisms by which serine racemase becomes activated by GRIP, divalent cations and ATP. We show that binding of PDZ6 of GRIP to serine racemase does not result in increased D-serine production. However, full-length GRIP does augment significantly enzymatic activity. We expressed various GRIP shorter constructs to map down the regions within GRIP that are necessary for serine racemase activation. We observed that, whereas recombinant proteins containing PDZ4-PDZ5-PDZ6 are unable to activate serine racemase, other constructs containing PDZ4-PDZ5-PDZ6-GAP2-PDZ7 significantly augment its activity. Hence, activation of serine racemase by GRIP is not a direct consequence of the translocation towards the calcium channel but rather a likely conformational change induced by GRIP on serine racemase. On the other hand, the observed activation of serine racemase by divalent cations has been assumed to be a side-effect associated with ATP binding, which is known to form a complex with Mg2+ ions. Because no mammalian serine racemase has yet been crystallized, we used molecular modelling based on yeast and bacterial homologs to demonstrate that the binding sites for Ca2+, ATP and the PDZ6 domain of GRIP are spatially separated and modulate the enzyme through distinct mechanisms.
机译:脑丝氨酸消旋酶含有吡ido醛磷酸作为辅基,已知被二价阳离子(例如Ca2 +和Mg2 +)以及ATP和ADP激活。在体内,大脑丝氨酸消旋酶也可以通过多PSD-95 / discs大/ ZO-1(PDZ)域谷氨酸受体相互作用蛋白(GRIP)激活,该蛋白通常与α-氨基-GluR2 / 3亚基偶联3-羟基-5-甲基异恶唑-4-丙酸Ca2 +通道。在本研究中,我们分析了丝氨酸消旋酶被GRIP,二价阳离子和ATP激活的机制。我们表明,GRIP的PDZ6与丝氨酸消旋酶的结合不会导致D-丝氨酸产生的增加。但是,全长GRIP确实显着增强了酶活性。我们表达了各种GRIP较短的构建体,以映射GRIP内丝氨酸消旋酶激活所必需的区域。我们观察到,虽然包含PDZ4-PDZ5-PDZ6的重组蛋白无法激活丝氨酸消旋酶,但其他包含PDZ4-PDZ5-PDZ6-GAP2-PDZ7的构建体却大大增强了其活性。因此,GRIP对丝氨酸消旋酶的激活不是向钙通道易位的直接结果,而是GRIP在丝氨酸消旋酶上诱导的可能的构象变化。另一方面,已观察到二价阳离子对丝氨酸消旋酶的活化作用是与ATP结合相关的副作用,已知该结合会与Mg2 +离子形成复合物。由于尚未结晶出哺乳动物丝氨酸消旋酶,因此我们使用了基于酵母和细菌同源物的分子模型来证明GRIP的Ca2 +,ATP和PDZ6域的结合位点在空间上是分开的,并通过不同的机制调节酶。

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