Muñoz-Sánchez Jorge, Chánez-Cárdenas María Elena
Laboratorio de Patología Vascular Cerebral, Instituto Nacional de Neurología y Neurocirugía Manuel Velasco Suárez, 14269 Delegación Tlalpan, DF, Mexico.
Oxid Med Cell Longev. 2014;2014:604981. doi: 10.1155/2014/604981. Epub 2014 Jul 17.
Hemeoxygenase (HO) system is responsible for cellular heme degradation to biliverdin, iron, and carbon monoxide. Two isoforms have been reported to date. Homologous HO-1 and HO-2 are microsomal proteins with more than 45% residue identity, share a similar fold and catalyze the same reaction. However, important differences between isoforms also exist. HO-1 isoform has been extensively studied mainly by its ability to respond to cellular stresses such as hemin, nitric oxide donors, oxidative damage, hypoxia, hyperthermia, and heavy metals, between others. On the contrary, due to its apparently constitutive nature, HO-2 has been less studied. Nevertheless, its abundance in tissues such as testis, endothelial cells, and particularly in brain, has pointed the relevance of HO-2 function. HO-2 presents particular characteristics that made it a unique protein in the HO system. Since attractive results on HO-2 have been arisen in later years, we focused this review in the second isoform. We summarize information on gene description, protein structure, and catalytic activity of HO-2 and particular facts such as its cellular impact and activity regulation. Finally, we call attention on the role of HO-2 in oxygen sensing, discussing proposed hypothesis on heme binding motifs and redox/thiol switches that participate in oxygen sensing as well as evidences of HO-2 response to hypoxia.
血红素加氧酶(HO)系统负责将细胞内的血红素降解为胆绿素、铁和一氧化碳。迄今为止,已报道了两种同工型。同源的HO-1和HO-2是微粒体蛋白,其氨基酸残基同一性超过45%,具有相似的折叠结构并催化相同的反应。然而,同工型之间也存在重要差异。HO-1同工型已被广泛研究,主要是因其对细胞应激(如血红素、一氧化氮供体、氧化损伤、缺氧、热疗和重金属等)的反应能力。相反,由于其明显的组成型性质,HO-2的研究较少。尽管如此,它在睾丸、内皮细胞等组织中,尤其是在大脑中的丰富表达,表明了HO-2功能的相关性。HO-2具有使其成为HO系统中独特蛋白质的特殊特征。由于近年来在HO-2方面取得了引人注目的成果,我们将本综述聚焦于第二种同工型。我们总结了关于HO-2的基因描述、蛋白质结构、催化活性以及其细胞影响和活性调节等特殊事实的信息。最后,我们提请关注HO-2在氧感知中的作用,讨论关于参与氧感知的血红素结合基序和氧化还原/硫醇开关的提出假说以及HO-2对缺氧反应的证据。