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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Calcium-deficient calmodulin binding and activation of neuronal and inducible nitric oxide synthases.
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Calcium-deficient calmodulin binding and activation of neuronal and inducible nitric oxide synthases.

机译:钙缺乏钙调蛋白结合和神经元和诱导型氧化氮合酶的活化。

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The nitric oxide synthase (NOS) enzymes are bound and activated by the Ca(2+)-binding protein, calmodulin (CaM). We have utilized CaM mutants deficient in binding Ca(2+) with mutations in the N-lobe (CaM(12)), the C-lobe (CaM(34)), or both lobes of CaM (CaM(1234)) to determine their effect on the binding and activation of the Ca(2+)-dependent neuronal (nNOS) and Ca(2+)-independent inducible NOS (iNOS) isoforms. Four different kinetic assays were employed to monitor the effect of these CaM mutants on electron transfer rates in NOS. Protein-protein interactions between CaM and NOS were studied using steady-state fluorescence and spectropolarimetry to monitor the binding of these CaM mutants to nNOS and iNOS CaM-binding domain peptides. The CaM mutants were unable to activate nNOS, however, our CD results show that the C-terminal lobe of CaM is capable of binding to nNOS peptide in the presence of Ca(2+). Our results prove for the first time without the use of chelators that apo-CaM is capable of binding to iNOS peptides and holoenzymes.
机译:一氧化氮合酶(NOS)酶被Ca(2 +)结合蛋白,钙调蛋白(凸轮)结合并激活。我们利用缺乏缺乏结合Ca(2+)的CAM突变体在n叶(凸轮(12))中的突变,C-凸耳(凸轮(34))或凸轮(凸轮(1234))中的凸叶(凸轮(1234))。确定它们对Ca(2 +)依赖性神经元(NNOS)和Ca(2 +) - 独立诱导NoS(InOS)同种型的结合和活化的影响。使用四种不同的动力学测定来监测这些凸轮突变体对NoS的电子转移率的影响。使用稳态荧光和光化聚丙烯研究凸轮和NOS之间的蛋白质 - 蛋白质相互作用,以监测这些凸轮突变体与NNOS和InOS凸轮结合结构域肽的结合。凸轮突变体无法激活NNO,但是,我们的CD结果表明CAM的C末端叶能够在CA(2+)存在下与NNOS肽结合。我们的结果是第一次证明了不使用Apo-Cam能够与Inos肽和全吻蛋白结合的螯合剂。

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