Toiron C, González C, Bruix M, Rico M
Instituto de Estructura de la Materia, CSIC, Madrid, Spain.
Protein Sci. 1996 Aug;5(8):1633-47. doi: 10.1002/pro.5560050817.
The three-dimensional structure of the complexes of ribonuclease A with cytidyl-2',5'-adenosine (2',5'-CpA) and deoxycytidyl-3',5'-deoxyadenosine [3',5'-d(CpA)] in aqueous solution has been determined by 1H NMR methods in combination with restrained molecular dynamics calculations. Twenty-three intermolecular NOE cross-corrections for the 3',5'-d(CpA) complex and 19 for the 2',5'-CpA, together with about 1,000 intramolecular NOEs assigned for each complex, were translated into distance constraints and used in the calculation. No significant changes in the global structure of the enzyme occur upon complex formation. The side chains of His 12, Thr 45, His 119, and the amide backbone group of Phe 120 are involved directly in the binding of the ligands at the active site. The conformation of the two bases is anti in the two complexes, but differs from the crystal structure in the conformation of the two sugar rings in 3',5'-d(CpA), shown to be in the S-type region, as deduced from an analysis of couplings between the ribose protons. His 119 is found in the two complexes in only one conformation, corresponding to position A in the free protein. Side chains of Asn 67, Gln 69, Asn 71, and Glu 111 from transient hydrogen bonds with the adenine base, showing the existence of a pronounced flexibility of these enzyme side chains at the binding site of the downstream adenine. All other general features on the structures coincide clearly with those observed in the crystal state.
通过结合受限分子动力学计算的1H NMR方法,已确定了核糖核酸酶A与胞苷-2',5'-腺苷(2',5'-CpA)和脱氧胞苷-3',5'-脱氧腺苷[3',5'-d(CpA)]在水溶液中的复合物的三维结构。对3',5'-d(CpA)复合物有23个分子间NOE交叉校正,对2',5'-CpA有19个,再加上为每个复合物指定的约1000个分子内NOE,都被转化为距离约束并用于计算。复合物形成后,酶的整体结构没有显著变化。His 12、Thr 45、His 119的侧链以及Phe 120的酰胺主链基团直接参与配体在活性位点的结合。在这两种复合物中,两个碱基的构象都是反式的,但在3',5'-d(CpA)中两个糖环的构象与晶体结构不同,从核糖质子之间的耦合分析推断,其处于S型区域。在这两种复合物中发现His 119只有一种构象,对应于游离蛋白质中的A位置结构。Asn 67、Gln 69、Asn 71和Glu 111的侧链与腺嘌呤碱基形成瞬时氢键,表明这些酶侧链在下游腺嘌呤的结合位点存在明显的灵活性。结构上的所有其他一般特征与晶体状态下观察到的特征明显一致。