Institute of Biochemistry and Molecular Genetics, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
University of Ljubljana, Biotechnical Faculty, Department of Animal Science, Domžale, Slovenia.
OMICS. 2021 Jan;25(1):38-51. doi: 10.1089/omi.2020.0160. Epub 2020 Dec 11.
Paraoxonase 1 (PON1) enzyme has antioxidative properties and is present in mammalian blood and several other body fluids. In blood, PON1 is usually integrated into the high-density lipoprotein (HDL) cholesterol. PON1 is a highly versatile enzyme displaying diverse functions such as arylesterase, lactonase, and paraoxonase, among others. PON1 activities are usually investigated with artificial substrates, for example, dihydrocoumarin and thiobutyl butyrolactone for lactonase activity. The PON1 enzyme activities measured with different substrates tend to be falsely assumed as being equivalent in the literature, although there are poor or weak correlations among the PON1 enzyme activities with different substrates. In addition, and despite our knowledge of the factors influencing PON1 paraoxonase and arylesterase activities, there is little knowledge of PON1 lactonase activity variations and attendant mechanisms. This is important considering further that the lactonase activity is the native activity of PON1. We report here a multi-omics analysis of PON1 lactonase activity. The influence of genetic variations, particularly of single nucleotide polymorphisms and epigenetic, proteomic, and lipidomic variations on PON1 lactonase activity are reviewed. In addition, the influence of various environmental, clinical, and demographic variables on PON1 lactonase activity is discussed. Finally, we examine the associations between PON1 lactonase activity and health states and common complex diseases such as atherosclerosis, dementias, obesity, and diabetes. To the best of our knowledge, this is the first multi-omics analysis of PON1 lactonase activity with an eye to future applications in basic life sciences and translational medicine and the nuances of critically interpreting PON1 function with lactones as substrates.
对氧磷酶 1(PON1)酶具有抗氧化特性,存在于哺乳动物的血液和其他几种体液中。在血液中,PON1 通常整合到高密度脂蛋白(HDL)胆固醇中。PON1 是一种多功能酶,具有多种功能,如芳基酯酶、内酯酶和对氧磷酶等。PON1 活性通常用人工底物进行研究,例如二氢香豆素和硫代丁基丁酸内酯用于内酯酶活性。尽管不同底物的 PON1 酶活性之间存在较差或较弱的相关性,但文献中通常假设用不同底物测量的 PON1 酶活性是等效的。此外,尽管我们了解影响 PON1 对氧磷酶和芳基酯酶活性的因素,但对 PON1 内酯酶活性的变化及其伴随的机制知之甚少。考虑到内酯酶活性是 PON1 的天然活性,这一点尤为重要。我们在这里报告了 PON1 内酯酶活性的多组学分析。综述了遗传变异,特别是单核苷酸多态性和表观遗传、蛋白质组学和脂质组学变异对 PON1 内酯酶活性的影响。此外,还讨论了各种环境、临床和人口统计学变量对 PON1 内酯酶活性的影响。最后,我们检查了 PON1 内酯酶活性与健康状态和常见复杂疾病(如动脉粥样硬化、痴呆、肥胖和糖尿病)之间的关联。据我们所知,这是首次对 PON1 内酯酶活性进行多组学分析,以期在基础生命科学和转化医学中得到应用,并细致解读以内酯为底物的 PON1 功能。