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组氨酸环质子的核磁共振滴定曲线。核糖核酸酶S-肽和S-蛋白。

Nuclear magnetic resonance titration curves of histidine ring protons. Ribonuclease S-peptide and S-proteins.

作者信息

Shindo H, Cohen J S

出版信息

J Biol Chem. 1976 May 10;251(9):2648-52.

PMID:4455
Abstract

The histidine C-2 proton NMR titration curves of ribonuclease S-peptide (residues 1 to 20) and S-protein (residues 21 to 124) are reported. Although S-protein contains 3 histidine residues, four discrete resonances are observed to titrate. One of these arises from the equivalent histidine residues of unfolded S-protein. The variation in area of the four resonances indicate that there is a reversible pH-dependent equilibrium between the folded and unfolded forms of S-protein, with some unfolded material being present at most pH values. Two of the resonances of the folded S-protein can be assigned to 2 of the histidine residues, 48 and 105, from the close similarity of their titration curves to those in ribonuclease. These similarities indicate a homology of portions of the folded conformation of S-protein to that of ribonuclease in solution. These results indicate that the complete amino acid sequence is not required to produce a folded conformation similar to the native globular protein, and they appear to eliminate the possibility that proteins fold from their NH2 terminus during protein synthesis. The low pH inflection present in the titration curve assigned to histidine residue 48 in ribonuclease is absent from this curve in S-protein. This is consistent with our previous conclusion that this inflection arises from the interaction of histidine 48 with aspartic acid residue 14, which is also absent in S-protein. The third titrating resonance of native S-protein is assigned to the remaining histidine residue at position 119. The properties of this resonance are not identical with either of the titration curves of the active site histidine residues 12 and 119 of ribonuclease. The resonance assigned to histidine 119 is the only one significantly affected on the addition of sodium phosphate to S-protein, indicating that some degree of phosphate binding occurs. In both the absence and presence of phosphate this curve also lacks the low pH inflection observed in the histidine 119 NMR titration curve in ribonuclease. This difference presumably arise from a conformational between ribonuclease and the folded S-protein involving a carboxyl group.

摘要

报道了核糖核酸酶S肽(1至20位氨基酸残基)和S蛋白(21至124位氨基酸残基)的组氨酸C-2质子核磁共振滴定曲线。尽管S蛋白含有3个组氨酸残基,但观察到有四个离散的共振峰发生滴定。其中一个来自未折叠S蛋白中相等的组氨酸残基。这四个共振峰面积的变化表明,S蛋白的折叠形式和未折叠形式之间存在一个可逆的pH依赖性平衡,在大多数pH值下都存在一些未折叠的物质。折叠态S蛋白的两个共振峰可归属于组氨酸残基48和105中的两个,因为它们的滴定曲线与核糖核酸酶中的滴定曲线非常相似。这些相似性表明S蛋白折叠构象的部分与溶液中核糖核酸酶的折叠构象具有同源性。这些结果表明,产生与天然球状蛋白相似的折叠构象并不需要完整的氨基酸序列,而且它们似乎排除了蛋白质在蛋白质合成过程中从其氨基末端开始折叠的可能性。核糖核酸酶中归属于组氨酸残基48的滴定曲线中出现的低pH拐点在S蛋白的这条曲线中不存在。这与我们之前的结论一致,即这个拐点是由组氨酸48与天冬氨酸残基14的相互作用引起的,而S蛋白中也不存在天冬氨酸残基14。天然S蛋白的第三个滴定共振峰归属于119位的剩余组氨酸残基。这个共振峰的性质与核糖核酸酶活性位点组氨酸残基12和119的任何一个滴定曲线都不相同。归属于组氨酸119的共振峰是唯一一个在向S蛋白中添加磷酸钠时受到显著影响的共振峰,表明发生了一定程度的磷酸盐结合。在不存在和存在磷酸盐的情况下,这条曲线也都没有核糖核酸酶中组氨酸119核磁共振滴定曲线中观察到的低pH拐点。这种差异可能是由于核糖核酸酶和折叠态S蛋白之间涉及一个羧基的构象差异引起的。

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