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Potential pitfalls in analyzing structural uncoupling of eNOS: aging is not associated with increased enzyme monomerization

机译:分析eNOS结构解偶联的潜在陷阱:老化与酶单体化增加无关

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摘要

Homodimer formation is essential for the normal activity of endothelial nitric oxide synthase (eNOS). Structural uncoupling of eNOS, with generation of enzyme monomers, is thought to contribute to endothelial dysfunction in several vascular disorders, including aging. However, low-temperature SDS-PAGE of healthy arteries has revealed considerable variation between studies in the relative expression of eNOS dimers and monomers. While assessing structural uncoupling of eNOS in aging arteries, we identified methodological pitfalls that might contribute to such variation. Therefore, using human cultured aortic endothelial cells and aortas from young and aged Fischer-344 rats, we investigated optimal approaches for analyzing the expression of eNOS monomers and dimers. The results demonstrated that published differences in treatment of cell lysates can significantly impact the relative expression of several eNOS species, including denatured monomers, partially folded monomers, dimers, and higher-order oligomers.
机译:同型二聚体的形成对于内皮一氧化氮合酶 (eNOS) 的正常活性至关重要。eNOS的结构解偶联与酶单体的产生被认为会导致几种血管疾病(包括衰老)的内皮功能障碍。然而,健康动脉的低温SDS-PAGE揭示了eNOS二聚体和单体相对表达的研究之间存在相当大的差异。在评估衰老动脉中eNOS的结构解偶联时,我们确定了可能导致这种变化的方法学陷阱。因此,使用来自年轻和老年Fischer-344大鼠的人培养的主动脉内皮细胞和主动脉,我们研究了分析eNOS单体和二聚体表达的最佳方法。结果表明,已发表的细胞裂解物处理差异可以显着影响几种 eNOS 物种的相对表达,包括变性单体、部分折叠单体、二聚体和高阶寡聚体。

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