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亚基界面处氨基酸取代对二聚体蛋白稳定性和聚集特性的影响:胸苷酸合成酶二聚体界面处的精氨酸178和精氨酸218的作用

Effect of amino acid substitutions at the subunit interface on the stability and aggregation properties of a dimeric protein: role of Arg 178 and Arg 218 at the Dimer interface of thymidylate synthase.

作者信息

Prasanna V, Gopal B, Murthy M R, Santi D V, Balaram P

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore.

出版信息

Proteins. 1999 Feb 15;34(3):356-68.

Abstract

The significance of two interface arginine residues on the structural integrity of an obligatory dimeric enzyme thymidylate synthase (TS) from Lactobacillus casei was investigated by thermal and chemical denaturation. While the R178F mutant showed apparent stability to thermal denaturation by its decreased tendency to aggregate, the Tm of the R218K mutant was lowered by 5 degrees C. Equilibrium denaturation studies in guanidinium chloride (GdmCl) and urea indicate that in both the mutants, replacement of Arg residues results in more labile quaternary and tertiary interactions. Circular dichroism studies in aqueous buffer suggest that the protein interior in R218K may be less well-packed as compared to the wild type protein. The results emphasize that quaternary interactions may influence the stability of the tertiary fold of TS. The amino acid replacements also lead to notable alteration in the ability of the unfolding intermediate of TS to aggregate. The aggregated state of partially unfolded intermediate in the R178F mutant is stable over a narrower range of denaturant concentrations. In contrast, there is an exaggerated tendency on the part of R218K to aggregate in intermediate concentrations of the denaturant. The 3 A crystal structure of the R178F mutant reveals no major structural change as a consequence of amino acid substitution. The results may be rationalized in terms of mutational effects on both the folded and unfolded state of the protein. Site specific amino acid substitutions are useful in identifying specific regions of TS involved in association of non-native protein structures.

摘要

通过热变性和化学变性研究了来自干酪乳杆菌的一种必需二聚体酶胸苷酸合成酶(TS)的两个界面精氨酸残基对其结构完整性的重要性。虽然R178F突变体因其聚集倾向降低而对热变性表现出明显的稳定性,但R218K突变体的熔解温度降低了5摄氏度。在氯化胍(GdmCl)和尿素中进行的平衡变性研究表明,在这两个突变体中,精氨酸残基的取代导致四级和三级相互作用更不稳定。在水性缓冲液中进行的圆二色性研究表明,与野生型蛋白相比,R218K中的蛋白内部堆积可能较差。结果强调四级相互作用可能影响TS三级结构的稳定性。氨基酸取代还导致TS解折叠中间体聚集能力的显著改变。R178F突变体中部分解折叠中间体的聚集状态在较窄的变性剂浓度范围内是稳定的。相比之下,R218K在变性剂的中间浓度下有过度聚集的倾向。R178F突变体的3 Å晶体结构显示氨基酸取代没有导致主要的结构变化。这些结果可以从对蛋白质折叠态和未折叠态的突变效应方面进行合理解释。位点特异性氨基酸取代有助于识别TS中参与非天然蛋白质结构缔合的特定区域。

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