Zegers I, Maes D, Dao-Thi M H, Poortmans F, Palmer R, Wyns L
Institute of Molecular Biology, Vrije Universiteit Brussel, St. Genesius Rode, Belgium.
Protein Sci. 1994 Dec;3(12):2322-39. doi: 10.1002/pro.5560031217.
The interactions of RNase A with cytidine 3'-monophosphate (3'-CMP) and deoxycytidyl-3',5'-deoxyadenosine (d(CpA)) were analyzed by X-ray crystallography. The 3'-CMP complex and the native structure were determined from trigonal crystals, and the d(CpA) complex from monoclinic crystals. The differences between the overall structures are concentrated in loop regions and are relatively small. The protein-inhibitor contacts are interpreted in terms of the catalytic mechanism. The general base His 12 interacts with the 2' oxygen, as does the electrostatic catalyst Lys 41. The general acid His 119 has 2 conformations (A and B) in the native structure and is found in, respectively, the A and the B conformation in the d(CpA) and the 3'-CMP complex. From the present structures and from a comparison with RNase T1, we propose that His 119 is active in the A conformation. The structure of the d(CpA) complex permits a detailed analysis of the downstream binding site, which includes His 119 and Asn 71. The comparison of the present RNase A structures with an inhibitor complex of RNase T1 shows that there are important similarities in the active sites of these 2 enzymes, despite the absence of any sequence homology. The water molecules were analyzed in order to identify conserved water sites. Seventeen water sites were found to be conserved in RNase A structures from 5 different space groups. It is proposed that 7 of those water molecules play a role in the binding of the N-terminal helix to the rest of the protein and in the stabilization of the active site.
通过X射线晶体学分析了核糖核酸酶A(RNase A)与胞苷3'-单磷酸(3'-CMP)和脱氧胞苷-3',5'-脱氧腺苷(d(CpA))的相互作用。3'-CMP复合物和天然结构由三方晶体确定,d(CpA)复合物由单斜晶体确定。整体结构的差异集中在环区域,且相对较小。根据催化机制解释了蛋白质-抑制剂的接触情况。一般碱His 12与2'氧相互作用,静电催化剂Lys 41也是如此。一般酸His 119在天然结构中有2种构象(A和B),在d(CpA)和3'-CMP复合物中分别处于A和B构象。根据目前的结构以及与RNase T1的比较,我们提出His 119在A构象中具有活性。d(CpA)复合物的结构允许对下游结合位点进行详细分析,该位点包括His 119和Asn 71。将目前的RNase A结构与RNase T1的抑制剂复合物进行比较表明,尽管这两种酶没有任何序列同源性,但它们的活性位点存在重要的相似之处。对水分子进行了分析,以确定保守的水位点。发现在来自5个不同空间群的RNase A结构中有17个水位点是保守的。有人提出,其中7个水分子在N端螺旋与蛋白质其余部分的结合以及活性位点的稳定中起作用。