Pintus Francesca, Sabatucci Annalaura, Maccarrone Mauro, Dainese Enrico, Medda Rosaria
Department of Sciences of Life and Environment, University of Cagliari, Monserrato, Cagliari, Italy.
Faculty of Bioscience and Technology for Food Agriculture and Environment, University of Teramo, Teramo, Italy.
Biotechnol Appl Biochem. 2018 Jan;65(1):81-88. doi: 10.1002/bab.1612. Epub 2017 Oct 23.
This minireview focuses on a plant copper/2,4,5-trihydroxyphenyl alanine quinone amine oxidase isolated from the latex of the shrub Euphorbia characias (ELAO). This enzyme has been investigated in terms of both molecular structure and kinetic mechanism. The characterization of this enzyme allowed us to identify specific amino acids and domains that play a key role in modulating substrate access into the active site not only for ELAO but also for other plant and mammalian amine oxidases. As mammalian amine oxidases are implicated in several physiological and pathological conditions, the deep structural characterization of their active site accession mechanisms could be the starting point for the development of enzyme modulators with high therapeutic potential. Thus, this paper gives structural/functional insights that open new perspectives in the research about the whole amine oxidase family.
这篇小型综述聚焦于一种从大戟科植物乳浆大戟(Euphorbia characias)的乳胶中分离出的植物铜/2,4,5-三羟基苯丙氨酸醌胺氧化酶(ELAO)。该酶已在分子结构和动力学机制方面展开研究。对这种酶的表征使我们能够识别出特定的氨基酸和结构域,这些氨基酸和结构域不仅对ELAO,而且对其他植物和哺乳动物胺氧化酶在调节底物进入活性位点方面起着关键作用。由于哺乳动物胺氧化酶与多种生理和病理状况有关,深入了解其活性位点进入机制的结构特征可能是开发具有高治疗潜力的酶调节剂的起点。因此,本文提供的结构/功能见解为整个胺氧化酶家族的研究开辟了新的视角。