Paul A, Kumar P, Surolia A, Vijayan M
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.
Acta Crystallogr F Struct Biol Commun. 2017 Nov 1;73(Pt 11):635-643. doi: 10.1107/S2053230X17015667. Epub 2017 Oct 30.
Two point mutants and the corresponding double mutant of Mycobacterium tuberculosis pantothenate kinase have been prepared and biochemically and structurally characterized. The mutants were designed to weaken the affinity of the enzyme for the feedback inhibitor CoA. The mutants exhibit reduced activity, which can be explained in terms of their structures. The crystals of the mutants are not isomorphous to any of the previously analysed crystals of the wild-type enzyme or its complexes. The mycobacterial enzyme and its homologous Escherichia coli enzyme exhibit structural differences in their nucleotide complexes in the dimer interface and the ligand-binding region. In three of the four crystallographically independent mutant molecules the structure is similar to that in the E. coli enzyme. Although the mutants involve changes in the CoA-binding region, the dimer interface and the ligand-binding region move in a concerted manner, an observation which might be important in enzyme action. This work demonstrates that the structure of the mycobacterial enzyme can be transformed into a structure similar to that of the E. coli enzyme through minor perturbations without external influences such as those involving ligand binding.
已制备出结核分枝杆菌泛酸激酶的两个点突变体及相应的双突变体,并对其进行了生化和结构表征。这些突变体旨在削弱该酶对反馈抑制剂辅酶A的亲和力。突变体表现出活性降低,这可以从其结构方面进行解释。突变体的晶体与野生型酶或其复合物先前分析的任何晶体都不同晶。分枝杆菌酶及其同源的大肠杆菌酶在其二聚体界面和配体结合区域的核苷酸复合物中表现出结构差异。在四个晶体学独立的突变体分子中的三个中,其结构与大肠杆菌酶中的结构相似。尽管突变体涉及辅酶A结合区域的变化,但二聚体界面和配体结合区域以协同方式移动,这一观察结果可能对酶的作用很重要。这项工作表明,分枝杆菌酶的结构可以通过微小扰动转化为与大肠杆菌酶相似的结构,而无需诸如涉及配体结合的外部影响。