首页> 外文期刊>Journal of the American Chemical Society >A WEAK CALCIUM BINDING SITE IN SUBTILISIN BPN' HAS A DRAMATIC EFFECT ON PROTEIN STABILITY
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A WEAK CALCIUM BINDING SITE IN SUBTILISIN BPN' HAS A DRAMATIC EFFECT ON PROTEIN STABILITY

机译:苏必利素BPN中弱的钙结合位点对蛋白质稳定性有明显的影响

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摘要

The crystal structures of both subtilisin 8397 and a thermostable variant (Lys 256 Tyr) have been determined to 2.2 and 1.8 Angstrom resolution. The thermostable variant (8397+1) was previously shown to exhibit enhanced thermostability over 8397 in both aqueous solutions and the polar organic solvent dimethylformamide (Sears, P.; et al. J. Am. Chem. Soc. 1994, 116, 6521-6530). The single substitution did not induce major changes in the protein structure (total rms deviation is 0.41 Angstrom); however, changes in calcium binding were detected. The strong calcium binding site was occupied in both structures as has been seen in other subtilisins (Pantoliano, M.; et al. Biochemistry 1988, 27, 8311-8317). Unexpectedly, the weak calcium binding site was occupied in the 8397+1 structure but not in the 8397 structure. The goal of the Lys 256 Tyr mutation was to improve the stability of subtilisin in DMF by removing a surface charge. However, changing this residue altered calcium binding at a site 12 Angstrom away, illustrating the importance of structure determination in understanding stability changes.
机译:枯草杆菌蛋白酶8397和热稳定变异体(Lys 256 Tyr)的晶体结构均已确定为2.2和1.8埃分辨率。先前显示出热稳定的变体(8397 + 1)在水溶液和极性有机溶剂二甲基甲酰胺中均显示出超过8397的增强的热稳定性(Sears,P .;等人J.Am.Chem.Soc.1994,116,6521- 6530)。单一取代不会引起蛋白质结构的重大变化(总均方根偏差为0.41埃);然而,钙结合的变化被检测到。如在其他枯草杆菌蛋白酶中所见,强的钙结合位点在两个结构中均被占据(Pantoliano,M .;等人,Biochemistry 1988,27,8311-8317)。出乎意料的是,弱的钙结合位点在8397 + 1结构中占据,但不在8397结构中占据。 Lys 256 Tyr突变的目的是通过除去表面电荷来提高枯草杆菌蛋白酶在DMF中的稳定性。但是,改变此残基会改变12埃外的位置处的钙结合,说明结构确定在理解稳定性变化中的重要性。

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