Jové Mariona, Mota-Martorell Natàlia, Pradas Irene, Martín-Gari Meritxell, Ayala Victoria, Pamplona Reinald
Department of Experimental Medicine, Lleida Biomedical Research Institute (IRBLleida), Lleida University (UdL), 25198 Lleida, Catalonia, Spain.
Antioxidants (Basel). 2020 Nov 15;9(11):1132. doi: 10.3390/antiox9111132.
The nonenzymatic adduction of malondialdehyde (MDA) to the protein amino groups leads to the formation of malondialdehyde-lysine (MDALys). The degree of unsaturation of biological membranes and the intracellular oxidative conditions are the main factors that modulate MDALys formation. The low concentration of this modification in the different cellular components, found in a wide diversity of tissues and animal species, is indicative of the presence of a complex network of cellular protection mechanisms that avoid its cytotoxic effects. In this review, we will focus on the chemistry of this lipoxidation-derived protein modification, the specificity of MDALys formation in proteins, the methodology used for its detection and quantification, the MDA-lipoxidized proteome, the metabolism of MDA-modified proteins, and the detrimental effects of this protein modification. We also propose that MDALys is an indicator of the rate of aging based on findings which demonstrate that (i) MDALys accumulates in tissues with age, (ii) the lower the concentration of MDALys the greater the longevity of the animal species, and (iii) its concentration is attenuated by anti-aging nutritional and pharmacological interventions.
丙二醛(MDA)与蛋白质氨基的非酶加合作用导致丙二醛 - 赖氨酸(MDALys)的形成。生物膜的不饱和度和细胞内氧化条件是调节MDALys形成的主要因素。在多种组织和动物物种中发现,不同细胞成分中这种修饰的浓度较低,这表明存在一个复杂的细胞保护机制网络,可避免其细胞毒性作用。在本综述中,我们将重点关注这种脂质氧化衍生的蛋白质修饰的化学性质、蛋白质中MDALys形成的特异性、用于其检测和定量的方法、MDA脂质氧化蛋白质组、MDA修饰蛋白质的代谢以及这种蛋白质修饰的有害影响。我们还基于以下发现提出MDALys是衰老速率的指标:(i)MDALys随年龄在组织中积累;(ii)动物物种的寿命越长,MDALys的浓度越低;(iii)抗衰老营养和药物干预可降低其浓度。