Bonaventura J, Bonaventura C, Sullivan B
J Exp Zool. 1975 Oct;194(1):155-74. doi: 10.1002/jez.1401940110.
Comparative studies of protein structure and function can be quite interesting by themselves, and even more interesting when interpreted with respect to an animal's physiology. In the case of fish hemoglobins, some success in the latter has been achieved but there are still many unsolved problems. It appears that comparative physiology and biochemistry have entered an era where results from comparative studies can shed a great deal of light on biochemical mechanisms in general. The trout hemoglobin system is an example. Distinctive hemoglobins in this system are presently being used as high resolution probes of the ligand-binding mechanism. Characterization of the multiple, structurally distinct subunits of the 60S Limulus hemocyanin molecule may similarly aid in understanding its function. Our studies suggest the possibility of using Limulus hemocyanin and other hemocyanins as structural homologs and analogs of more complex macromolecular arrays. The rapid development of molecular structural data from X-ray crystallographers combined with the vast data of comparative physiology and biochemistry makes this one of the most exciting areas in present day science.
蛋白质结构与功能的比较研究本身就可能相当有趣,而当结合动物生理学进行解读时则更具趣味性。就鱼类血红蛋白而言,在后者方面已取得了一些成功,但仍存在许多未解决的问题。看来比较生理学和生物化学已进入一个时代,在这个时代,比较研究的结果总体上能为生化机制提供大量的启示。鳟鱼血红蛋白系统就是一个例子。目前,该系统中独特的血红蛋白正被用作配体结合机制的高分辨率探针。对60S鲎血蓝蛋白分子多个结构不同的亚基进行表征,同样可能有助于理解其功能。我们的研究表明,有可能将鲎血蓝蛋白和其他血蓝蛋白用作更复杂大分子阵列的结构同源物和类似物。X射线晶体学家提供的分子结构数据的迅速发展,再加上比较生理学和生物化学的大量数据,使这成为当今科学中最令人兴奋的领域之一。