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Activation of Brain L-glutamate Decarboxylase 65 Isoform (GAD65) by Phosphorylation at Threonine 95 (T95)

机译:通过苏氨酸95(T95)的磷酸化激活脑L-谷氨酸脱羧酶65同种型(GAD65)(T95)

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摘要

Protein phosphorylation plays an important role in regulating soluble L-glutamic acid decarboxylase (GAD) and membrane-associated GAD activity. Previously, we reported the effect of phosphorylation on the two well-defined GAD isoforms, namely, GAD65 and GAD67, using highly purified preparations of recombinant human brain GAD65 (hGAD65) and GAD67. GAD65 was activated by phosphorylation, while GAD67 was inhibited by phosphorylation. The effect of phosphorylation on GAD65 and GAD67 could be reversed by treatment with protein phosphatases. We further demonstrated that protein kinase A (PKA) and protein kinase C isoform epsilon were the protein kinases responsible for phosphorylation and regulation of GAD67 and GAD65, respectively. In the current study, using MALDI-TOF, a total of four potential phosphorylation sites were identified in GAD65, two of which (threonine-95 (T-95) and Ser-417) were not reported previously. We have identified one specific phosphorylation site, (T95), in hGAD65 that can be phosphorylated by kinase C epsilon (PKC epsilon) using MALDITOF. When T95 is mutated to alanine, hGAD65 could no longer be phosphorylated by PKC epsilon, and the effect of PKC-mediated activation on hGAD65 is abolished. However, when T95 is mutated to glutamic acid, which mimics the phosphorylation status of hGAD65, the activity was greatly increased. An increase of GAD65 activity by 55 % compared to the wild type hGAD65 was observed indicating that mutation of T95 to glutamic acid mimics the effect of phosphorylation. A model depicting the role of phosphorylation of GAD65 in regulation of GABA neurotransmission is presented.
机译:蛋白质磷酸化在调节可溶性L-谷氨酸脱羧酶(GAD)和膜相关的GAD活性方面发挥着重要作用。以前,我们报道了磷酸化对两个明确定义的GAD同种型,即GAD65和GAD67的影响,使用重组人脑GAD65(HGAD65)和GAD67的高度纯化制剂。通过磷酸化激活GAD65,而GAD67被磷酸化抑制。通过用蛋白质磷酸酶处理可以通过用蛋白质磷酸酶治疗来逆转磷酸化对GAD65和GAD67的影响。我们进一步证明了蛋白激酶A(PKA)和蛋白激酶C同种型Epsilon分别是蛋白激酶,分别负责磷酸化和调节GAD67和GAD65。在目前使用MALDI-TOF的研究中,在GAD65中鉴定了总共4位潜在的磷酸化位点,其中两种(苏氨酸-95(T-95)和SER-417)未提前报道。我们已经鉴定了一种特定的磷酸化位点(T95),在HGAD65中,可以使用MALDITOF通过激酶Cε(PKC epsilon)磷酸化。当T95突变到丙氨酸中时,HGAD65不能再被PKCε磷酸化,并消除了PKC介导的活化对HGAD65的影响。然而,当T95突变到谷氨酸时,模拟HGAD65的磷酸化状态,活性大大增加。观察到与野生型HGAD65相比,GAD65活性增加55%,表明T95至谷氨酸的突变模拟磷酸化的作用。提出了一种模型,描绘了GAD65磷酸化在GABA神经递质调节中的作用。

著录项

  • 来源
    《Molecular Neurobiology》 |2017年第2期|共8页
  • 作者单位

    Acad Sinica Inst Biol Chem Core Facil Prot Struct Anal Taipei 11529 Taiwan;

    Florida Atlantic Univ Dept Basic Biomed Sci Charles E Schmidt Coll Med 777 Glades Rd BC 71 Room;

    Natl Yang Ming Med Univ Dept &

    Inst Physiol Taipei Taiwan;

    Natl Yang Ming Med Univ Dept &

    Inst Physiol Taipei Taiwan;

    Natl Yang Ming Med Univ Dept &

    Inst Physiol Taipei Taiwan;

    Acad Sinica Inst Biol Chem Core Facil Prot Struct Anal Taipei 11529 Taiwan;

    Acad Sinica Inst Biol Chem Core Facil Prot Struct Anal Taipei 11529 Taiwan;

    Florida Atlantic Univ Dept Basic Biomed Sci Charles E Schmidt Coll Med 777 Glades Rd BC 71 Room;

    Florida Atlantic Univ Dept Basic Biomed Sci Charles E Schmidt Coll Med 777 Glades Rd BC 71 Room;

    Florida Atlantic Univ Dept Basic Biomed Sci Charles E Schmidt Coll Med 777 Glades Rd BC 71 Room;

    Florida Atlantic Univ Dept Basic Biomed Sci Charles E Schmidt Coll Med 777 Glades Rd BC 71 Room;

    Florida Atlantic Univ Dept Basic Biomed Sci Charles E Schmidt Coll Med 777 Glades Rd BC 71 Room;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    GABA; Glutamate decarboxylase (GAD); Phosphorylation; GAD65;

    机译:GABA;谷氨酸脱羧酶(GAD);磷酸化;GAD65;

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