Kundu Suman, Trent James T, Hargrove Mark S
Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, Ames, IA 50011, USA.
Trends Plant Sci. 2003 Aug;8(8):387-93. doi: 10.1016/S1360-1385(03)00163-8.
New developments have forced a re-evaluation of our understanding of the structure and function of hemoglobins. Leghemoglobins regulate oxygen affinity through a mechanism different from that of myoglobin using a novel combination of heme pocket amino acids that lower the oxygen affinity. The hexacoordinate hemoglobins are characterized by intramolecular coordination of the ligand binding site at the heme iron, and were first identified in plants as the 'non-symbiotic plant hemoglobins'. They are now known to be present in animals and bacteria. Many of these proteins are upregulated in both plants and animals during hypoxia or similar stresses. Therefore, there might be a common physiological function for hexacoordinate hemoglobins in plants and animals.
新的进展促使我们重新评估对血红蛋白结构和功能的理解。豆血红蛋白通过一种不同于肌红蛋白的机制调节氧亲和力,它利用血红素口袋氨基酸的新组合来降低氧亲和力。六配位血红蛋白的特征是血红素铁处配体结合位点的分子内配位,最初在植物中被鉴定为“非共生植物血红蛋白”。现在已知它们存在于动物和细菌中。在缺氧或类似应激期间,许多这类蛋白质在植物和动物中都会上调。因此,六配位血红蛋白在植物和动物中可能具有共同的生理功能。