Cheung H T, Birdsall B, Frenkiel T A, Chau D D, Feeney J
Laboratory of Molecular Structure, National Institute for Medical Research, London, England.
Biochemistry. 1993 Jul 13;32(27):6846-54. doi: 10.1021/bi00078a007.
13C NMR studies provide a convenient way of obtaining detailed information about tautomeric and ionization states in protein-ligand complexes provided that suitably 13C-labeled molecules are available. In the present study, [4,6,8a-13C]- and [2,4a,7,9-13C]folic acid were synthesized and the 13C NMR spectra of their complexes with Lactobacillus casei dihydrofolate reductase (DHFR) were assigned and analyzed as a function of pH. From these data it was possible to determine the tautomeric and ionization states of the bound folate and to obtain further evidence about the orientation of the pteridine ring in the complexes. In the 13C spectra of the ternary complexes of the 13C-labeled folic acids with DHFR and NADP+, each labeled carbon gave rise to multiple signals, confirming our previous findings that there are three interconverting conformational forms of bound folate (forms I, IIa, and IIb) in the ternary complex (Birdsall et al., 1989b). The 13C spectra of the binary complexes of folate and DHFR also provide direct evidence for the presence of forms IIa and IIb and indirect evidence of some form I at low pH values ( < 5.0). 2D 1H-13C HMQC-NOESY experiments on ternary complexes formed using the [2,4a,7,9-13C]folic acid were used to obtain intermolecular NOEs between the folate H7 proton and protons on the protein, and these provided further characterization of the orientations of the pteridine ring in the different bound forms of folate (form IIb with its pteridine ring in the catalytically active conformation and forms I and IIa with their pteridine rings turned over by 180 degrees).(ABSTRACT TRUNCATED AT 250 WORDS)
只要有合适的13C标记分子,13C核磁共振研究就能提供一种便捷的方法,来获取有关蛋白质-配体复合物中互变异构和电离状态的详细信息。在本研究中,合成了[4,6,8a-13C]-和[2,4a,7,9-13C]叶酸,并对它们与干酪乳杆菌二氢叶酸还原酶(DHFR)形成的复合物的13C核磁共振谱进行了归属和pH依赖性分析。根据这些数据,可以确定结合态叶酸的互变异构和电离状态,并获得有关复合物中蝶啶环取向的更多证据。在13C标记叶酸与DHFR和NADP+形成的三元复合物的13C谱中,每个标记碳都产生多个信号,这证实了我们之前的发现,即三元复合物中存在三种相互转化的结合态叶酸构象形式(I型、IIa型和IIb型)(Birdsall等人,1989b)。叶酸与DHFR形成的二元复合物的13C谱也为IIa型和IIb型的存在提供了直接证据,并为低pH值(<5.0)下I型的存在提供了间接证据。使用[2,4a,7,9-13C]叶酸形成的三元复合物进行的二维1H-13C HMQC-NOESY实验,用于获取叶酸H7质子与蛋白质上质子之间的分子间NOE,这些进一步表征了不同结合态叶酸中蝶啶环的取向(IIb型其蝶啶环处于催化活性构象,I型和IIa型其蝶啶环翻转了180度)。(摘要截选至250字)