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Characterization of the interaction between endothelial nitric oxide synthase and heat shock protein 90: Implications foreNOS activation and nitric oxide release.

机译:内皮型一氧化氮合酶和热休克蛋白90相互作用的特征:提示forNOS激活和一氧化氮释放。

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摘要

Nitric oxide derived from the endothelium is a critical mediator of a variety of functions within the cardiovascular system. Nitric oxide is a potent vasodilator and anti-inflammatory autocoid that has profound effects on basic cellular functions including gene expression, cell migration, proliferation, and differentiation. Physiologically, endothelial cells manufacture nitric oxide via the enzyme endothelial nitric oxide synthase (eNOS). eNOS is a peripheral membrane protein that within endothelial cells targets to the Golgi and plasma membrane micro domains, termed Caveolae. This compartmentalization of eNOS is optimal for nitric oxide synthesis providing the rationale for the discovery of additional protein regulators of eNOS function such as calmodulin, caveolin, and Akt. Recent studies have demonstrated the importance of a stimulus dependent interaction of eNOS with heat shock protein 90. Based on this finding my thesis examines the role of hsp90 as component of stimulation dependent signal transduction leading activation of eNOS. My objectives were to characterize the localization of hsp90 and eNOS within endothelial cells, and identify the molecular mechanism for stimulus dependent eNOS activation by hsp90. The data presented herein describes direct and definitive evidence for the importance of the interaction between hsp90 and eNOS. We demonstrate the co-localization of hsp90 and eNOS within endothelial cells and blood vessels and provide further evidence for the involvement of hsp90 in eNOS function in vivo through a model of cell permeability. We present further support by demonstrating hsp90 can facilitate the calmodulin dependent displacement of eNOS from caveolin and can serve as a molecular scaffold to regulate Akt dependent phosphorylation of eNOS. Finally, we characterized the domains of hsp90 required to bind eNOS, using yeast 2-hybrid, cell based co-precipitation experiments and GST-fusion proteins, revealing that the M region of hsp90 (amino acids 442–600) interacts with the amino terminus of eNOS (amino acids 300–400). In conclusion, these data provide direct evidence for that hsp90 is indeed the critical link between the various pathways leading to eNOS activation and nitric oxide release.
机译:源自内皮的一氧化氮是心血管系统内多种功能的关键介质。一氧化氮是一种有效的血管扩张剂和抗炎性类自体脂质,对基本细胞功能(包括基因表达,细胞迁移,增殖和分化)具有深远的影响。在生理上,内皮细胞通过内皮一氧化氮合酶(eNOS)制造一氧化氮。 eNOS是一种外周膜蛋白,在内皮细胞内靶向高尔基体和质膜微区,称为小窝。 eNOS的这种区室化对于一氧化氮合成而言是最佳的,为发现eNOS功能的其他蛋白质调节剂(例如钙调蛋白,小窝蛋白和Akt)提供了依据。最近的研究表明eNOS与热休克蛋白90的刺激依赖性相互作用的重要性。基于这一发现,我的论文研究了hsp90作为刺激依赖性信号转导导致eNOS激活的成分的作用。我的目标是表征hsp90和eNOS在内皮细胞中的定位,并确定hsp90刺激依赖eNOS激活的分子机制。本文提供的数据描述了hsp90与eNOS之间相互作用的重要性的直接和明确的证据。我们证明了内皮细胞和血管中hsp90和eNOS的共定位,并通过细胞渗透性模型为hsp90参与体内eNOS功能提供了进一步的证据。我们通过展示hsp90可以提供进一步的支持,它可以促进钙小蛋白依赖的eNOS从小孔蛋白的置换,并且可以用作调节eNOS的Akt依赖性磷酸化的分子支架。最后,我们使用酵母2杂交,基于细胞的共沉淀实验和GST融合蛋白表征了结合eNOS所需的hsp90的结构域,揭示了hsp90的M区(氨基酸442–600)与氨基末端相互作用eNOS(氨基酸300-400)。总之,这些数据直接证明了hsp90确实是导致eNOS活化和一氧化氮释放的各种途径之间的关键联系。

著录项

  • 作者

    Fontana, Jason Thomas.;

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Health Sciences Pharmacology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

  • 入库时间 2022-08-17 11:46:15

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