Schiffer M, Ainsworth C, Xu Z B, Carperos W, Olsen K, Solomon A, Stevens F J, Chang C H
Biological, Environmental, and Medical Research Division, Argonne National Laboratory, Illinois 60439-4833.
Biochemistry. 1989 May 2;28(9):4066-72. doi: 10.1021/bi00435a065.
We have determined the structure of the immunoglobulin light-chain dimer Loc in a second crystal form that was grown from distilled water. The crystal structure was determined to 2.8-A resolution; the R factor is 0.22. The two variable domains are related by local 2-fold axes and form an antigen binding "pocket". The variable domain-variable domain interaction observed in this crystal form differs from the one exhibited by the protein when crystallized from ammonium sulfate in which the two variable domains formed a protrusion (Chang et al., 1985). The structure attained in the distilled water crystals is similar to, but not identical with, the one observed for the Mcg light-chain dimer in crystals grown from ammonium sulfate. Thus, two strikingly different structures were attained by this multisubunit protein in crystals grown under two different, commonly used, crystallization techniques. The quaternary interactions exhibited by the protein in the two crystal forms are sufficiently different to suggest fundamentally different interpretations of the structural basis for the function of this protein. This observation may have general implications regarding the use of single crystallographic determinations for detailed identification of structural and functional relationships. On the other hand, proteins whose structures can be altered by manipulation of crystallization conditions may provide useful systems for study of fundamental structural chemistry.
我们已确定了免疫球蛋白轻链二聚体Loc在从蒸馏水中生长出的第二种晶体形式中的结构。晶体结构的分辨率达到了2.8埃;R因子为0.22。两个可变结构域通过局部二重轴相关联,并形成一个抗原结合“口袋”。在这种晶体形式中观察到的可变结构域 - 可变结构域相互作用与该蛋白从硫酸铵中结晶时所表现出的相互作用不同,在硫酸铵结晶时两个可变结构域形成一个突起(Chang等人,1985年)。在蒸馏水晶体中获得的结构与从硫酸铵中生长的晶体中观察到的Mcg轻链二聚体的结构相似,但并不相同。因此,通过这种多亚基蛋白在两种不同的常用结晶技术下生长的晶体中获得了两种截然不同的结构。该蛋白在两种晶体形式中表现出的四级相互作用差异足够大,这表明对该蛋白功能的结构基础有根本不同的解释。这一观察结果可能对使用单晶X射线衍射测定法详细鉴定结构与功能关系具有普遍意义。另一方面,其结构可通过操纵结晶条件而改变的蛋白质可能为研究基础结构化学提供有用的系统。