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首页> 外文期刊>American Journal of Physiology >Intracellular location regulates calcium-calmodulin-dependent activation of organelle-restricted eNOS.
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Intracellular location regulates calcium-calmodulin-dependent activation of organelle-restricted eNOS.

机译:细胞内位置调节钙离子钙调蛋白依赖的细胞器限制性eNOS的激活。

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Mislocalization of endothelial nitric oxide (NO) synthase (eNOS) in response to oxidized low-density lipoprotein, cholesterol depletion, elevated blood pressure, and bound eNOS interacting protein/NOS traffic inducer is associated with reduced NO release via unknown mechanisms. The proper targeting of eNOS to the plasma membrane or intracellular organelles is an important regulatory step controlling enzyme activity. Previous studies have shown that plasma membrane eNOS is constitutively phosphorylated on serine 1179 and highly active. In contrast, the activity of eNOS targeted to intracellular organelles is more complex. The cis-Golgi eNOS is fully activated by Akt-dependent phosphorylation. However, eNOS targeted to the trans-Golgi is decidedly less active in response to all modes of activation, including mutation to the phosphomimetic aspartic acid. In this study, we establish that when expressed within other intracellular organelles, such as the mitochondria and nucleus, the activity of eNOS is alsogreatly reduced. To address the mechanisms underlying the impaired catalytic activity of eNOS within these locations, we generated subcellular-targeted constructs that express a calcium-independent NOS isoform, iNOS. With the use of organelle specific (plasma membrane, cis- vs. trans-Golgi, plasma membrane, and Golgi, nucleus, and mitochondria) targeting motifs fused to the wild-type iNOS, we measured NO release from intact cells. With the exception of the Golgi lumen, our results showed no impairment in the ability of targeted iNOS to synthesize NO. Confirmation of correct targeting was obtained through confocal microscopy using identical constructs fused to the green fluorescent protein. We conclude that the reduced activation of eNOS within discrete cytoplasmic regions of the Golgi, the mitochondria and the nucleus is primarily due to insufficient access to calcium-calmodulin.
机译:内皮一氧化氮(NO)合酶(eNOS)在氧化的低密度脂蛋白,胆固醇耗竭,血压升高以及结合的eNOS相互作用蛋白/ NOS流量诱导剂反应中定位错误与NO释放减少(通过未知机制)相关。 eNOS正确靶向质膜或细胞内细胞器是控制酶活性的重要调控步骤。先前的研究表明,质膜eNOS在丝氨酸1179上被组成型磷酸化,并具有很高的活性。相反,靶向细胞内细胞器的eNOS的活性更为复杂。顺式-高尔基体eNOS被依赖于Akt的磷酸化完全激活。但是,针对反式高尔基体的eNOS在响应所有激活方式(包括突变为拟膦酸天冬氨酸的方式)时,其活性肯定较低。在这项研究中,我们确定当在其他细胞内细胞器(如线粒体和细胞核)中表达时,eNOS的活性也会大大降低。为了解决这些位置内eNOS催化活性受损的潜在机制,我们生成了亚细胞靶向的构建体,该构建体表达了钙依赖性NOS同工型iNOS。通过使用与野生型iNOS融合的细胞器特异性(质膜,顺式与反式高尔基体,反式高尔基体,质膜以及高尔基体,细胞核和线粒体)靶向基序,我们测量了完整细胞的NO释放。除高尔基体腔外,我们的研究结果表明靶向iNOS合成NO的能力没有任何损害。通过共聚焦显微镜,使用与绿色荧光蛋白融合的相同构建体,获得正确靶向的确认。我们得出结论,在高尔基体,线粒体和细胞核的离散胞质区域内,eNOS的激活减少主要是由于钙钙调蛋白的获取不足。

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