Jenkins Cara L, Thiyagarajan Nethaji, Sweeney Rozamond Y, Guy Michael P, Kelemen Bradley R, Acharya K Ravi, Raines Ronald T
Department of Chemistry, University of Wisconsin-Madison, WI, USA.
FEBS J. 2005 Feb;272(3):744-55. doi: 10.1111/j.1742-4658.2004.04511.x.
2'-Fluoro-2'-deoxyuridine 3'-phosphate (dU(F)MP) and arabinouridine 3'-phosphate (araUMP) have non-natural furanose rings. dU(F)MP and araUMP were prepared by chemical synthesis and found to have three- to sevenfold higher affinity than uridine 3'-phosphate (3'-UMP) or 2'-deoxyuridine 3'-phosphate (dUMP) for ribonuclease A (RNase A). These differences probably arise (in part) from the phosphoryl groups of 3'-UMP, dU(F)MP, and araUMP (pK(a) = 5.9) being more anionic than that of dUMP (pK(a) = 6.3). The three-dimensional structures of the crystalline complexes of RNase A with dUMP, dU(F)MP and araUMP were determined at < 1.7 A resolution by X-ray diffraction analysis. In these three structures, the uracil nucleobases and phosphoryl groups bind to the enzyme in a nearly identical position. Unlike 3'-UMP and dU(F)MP, dUMP and araUMP bind with their furanose rings in the preferred pucker. In the RNase A.araUMP complex, the 2'-hydroxyl group is exposed to the solvent. All four 3'-nucleotides bind more tightly to wild-type RNase A than to its T45G variant, which lacks the residue that interacts most closely with the uracil nucleobase. These findings illuminate in atomic detail the interaction of RNase A and 3'-nucleotides, and indicate that non-natural furanose rings can serve as the basis for more potent inhibitors of catalysis by RNase A.
2'-氟-2'-脱氧尿苷3'-磷酸(dU(F)MP)和阿糖尿苷3'-磷酸(araUMP)具有非天然的呋喃糖环。dU(F)MP和araUMP通过化学合成制备,发现它们对核糖核酸酶A(RNase A)的亲和力比尿苷3'-磷酸(3'-UMP)或2'-脱氧尿苷3'-磷酸(dUMP)高3至7倍。这些差异可能(部分)源于3'-UMP、dU(F)MP和araUMP的磷酸基团(pK(a)=5.9)比dUMP的磷酸基团(pK(a)=6.3)更具阴离子性。通过X射线衍射分析在<1.7 Å分辨率下测定了RNase A与dUMP、dU(F)MP和araUMP的晶体复合物的三维结构。在这三种结构中,尿嘧啶核苷酸碱基和磷酸基团在几乎相同的位置与酶结合。与3'-UMP和dU(F)MP不同,dUMP和araUMP以其呋喃糖环处于优选的皱折构象结合。在RNase A.araUMP复合物中,2'-羟基暴露于溶剂中。所有四种3'-核苷酸与野生型RNase A的结合比与其T45G变体更紧密,T45G变体缺乏与尿嘧啶核苷酸碱基相互作用最密切的残基。这些发现从原子细节上阐明了RNase A与3'-核苷酸的相互作用,并表明非天然的呋喃糖环可以作为RNase A催化作用更强抑制剂的基础。