Kato Sanae, Matsui Takashi, Gatsogiannis Christos, Tanaka Yoshikazu
Faculty of Fisheries, Kagoshima University, 4-50-20 Shimoarata, Kagoshima, 890-0056, Japan.
Graduate School of Life Sciences, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai, 980-8577, Japan.
Biophys Rev. 2018 Apr;10(2):191-202. doi: 10.1007/s12551-017-0349-4. Epub 2017 Dec 12.
Most molluscs have blue blood because their respiratory molecule is hemocyanin, a type-3 copper-binding protein that turns blue upon oxygen binding. Molluscan hemocyanins are huge cylindrical multimeric glycoproteins that are found freely dissolved in the hemolymph. With molecular masses ranging from 3.3 to 13.5 MDa, molluscan hemocyanins are among the largest known proteins. They form decamers or multi-decamers of 330- to 550-kDa subunits comprising more than seven paralogous functional units. Based on the organization of functional domains, they assemble to form decamers, di-decamers, and tri-decamers. Their structure has been investigated using a combination of single particle electron cryo-microsopy of the entire structure and high-resolution X-ray crystallography of the functional unit, although, the one exception is squid hemocyanin for which a crystal structure analysis of the entire molecule has been carried out. In this review, we explain the molecular characteristics of molluscan hemocyanin mainly from the structural viewpoint, in which the structure of the functional unit, architecture of the huge cylindrical multimer, relationship between the composition of the functional unit and entire tertiary structure, and possible functions of the carbohydrates are introduced. We also discuss the evolutionary implications and physiological significance of molluscan hemocyanin.
大多数软体动物的血液是蓝色的,因为它们的呼吸分子是血蓝蛋白,这是一种3型铜结合蛋白,在与氧气结合时会变成蓝色。软体动物的血蓝蛋白是巨大的圆柱形多聚体糖蛋白,自由溶解于血淋巴中。软体动物血蓝蛋白的分子量在3.3至13.5兆道尔顿之间,是已知最大的蛋白质之一。它们由330至550千道尔顿的亚基形成十聚体或多十聚体,包含七个以上的旁系同源功能单元。根据功能域的组织方式,它们组装形成十聚体、双十聚体和三十聚体。尽管对鱿鱼血蓝蛋白进行了全分子晶体结构分析,但对于它们的结构,已结合整个结构的单颗粒电子冷冻显微镜和功能单元的高分辨率X射线晶体学进行了研究。在这篇综述中,我们主要从结构角度解释软体动物血蓝蛋白的分子特征,介绍功能单元的结构、巨大圆柱形多聚体的结构、功能单元组成与整个三级结构之间的关系以及碳水化合物可能的功能。我们还讨论了软体动物血蓝蛋白的进化意义和生理重要性。