Russo N, Acharya K R, Vallee B L, Shapiro R
Center for Biochemical and Biophysical Sciences and Medicine, Harvard Medical School, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 1996 Jan 23;93(2):804-8. doi: 10.1073/pnas.93.2.804.
Kinetic analysis and molecular modeling have been used to map the ribonucleolytic center of angiogenin (Ang). Pyrimidine nucleotides were found to interact very weakly with Ang, consistent with the inaccessible B1 pyrimidine binding site revealed by x-ray crystallography. Ang also lacks an effective phosphate binding site on the 5' side of B1. Although the B2 site that preferentially binds purines on the 3' side of B1 is also weak, its associated phosphate subsites make substantial contributions: both 3',5'-ADP and 5'-ADP have Ki values 6-fold lower than for 5'-AMP, and adding a 3'-phosphate to the substrate CpA increases Kcat/Km by 9-fold. Thus Ang has a functional P2 site on the 3' side of B2 and a site for a second phosphate on the 5' side of B2. Modeling of an Ang-d(ApTpApA) complex suggested that Arg-5 forms part of the P2 site and that a 2'-phosphate might bind more tightly than a 3'-phosphate. Both predictions were confirmed kinetically. The subsite map obtained by this combined approach indicated that 5'-diphosphoadenosine 2'-phosphate might be a more potent inhibitor than any of the nucleotides tested thus far. Indeed, its Ki value of 150 microM is 50-fold lower than that for the best nucleotide previously reported and 400-fold lower than the Km for the best dinucleotide substrate. This compound may serve as a suitable starting point for the eventual design of tight-binding inhibitors of Ang as antiangiogenic agents for human therapy.
动力学分析和分子建模已被用于绘制血管生成素(Ang)的核糖核酸酶解中心图谱。发现嘧啶核苷酸与Ang的相互作用非常微弱,这与X射线晶体学揭示的难以接近的B1嘧啶结合位点一致。Ang在B1的5'侧也缺乏有效的磷酸盐结合位点。尽管在B1的3'侧优先结合嘌呤的B2位点也很弱,但其相关的磷酸盐亚位点却做出了重要贡献:3',5'-ADP和5'-ADP的Ki值均比5'-AMP低6倍,并且在底物CpA上添加3'-磷酸会使Kcat/Km增加9倍。因此,Ang在B2的3'侧有一个功能性的P2位点,在B2的5'侧有一个第二个磷酸盐的结合位点。Ang-d(ApTpApA)复合物的建模表明,Arg-5构成了P2位点的一部分,并且2'-磷酸可能比3'-磷酸结合更紧密。这两个预测都通过动力学得到了证实。通过这种联合方法获得的亚位点图谱表明,5'-二磷酸腺苷2'-磷酸可能是比迄今为止测试的任何核苷酸都更有效的抑制剂。事实上,其150 microM的Ki值比先前报道的最佳核苷酸低50倍,比最佳二核苷酸底物的Km低400倍。这种化合物可能作为最终设计Ang紧密结合抑制剂的合适起点,作为人类治疗的抗血管生成剂。