Eastberg Jennifer H, Pelletier John, Stoddard Barry L
Fred Hutchinson Cancer Research Center and the Graduate Program in Molecular and Cellular Biology, University of Washington, Seattle, WA 98109, USA.
Nucleic Acids Res. 2004 Jan 30;32(2):653-60. doi: 10.1093/nar/gkh212. Print 2004.
T4 phage polynucleotide kinase (PNK) displays 5'-hydroxyl kinase, 3'-phosphatase and 2',3'-cyclic phosphodiesterase activities. The enzyme phosphorylates the 5' hydroxyl termini of a wide variety of nucleic acid substrates, a behavior studied here through the determination of a series of crystal structures with single-stranded (ss)DNA oligonucleotide substrates of various lengths and sequences. In these structures, the 5' ribose hydroxyl is buried in the kinase active site in proper alignment for phosphoryl transfer. Depending on the ssDNA length, the first two or three nucleotide bases are well ordered. Numerous contacts are made both to the phosphoribosyl backbone and to the ordered bases. The position, side chain contacts and internucleotide stacking interactions of the ordered bases are strikingly different for a 5'-GT DNA end than for a 5'-TG end. The base preferences displayed at those positions by PNK are attributable to differences in the enzyme binding interactions and in the DNA conformation for each unique substrate molecule.
T4噬菌体多核苷酸激酶(PNK)具有5'-羟基激酶、3'-磷酸酶和2',3'-环磷酸二酯酶活性。该酶可磷酸化多种核酸底物的5'羟基末端,本文通过测定一系列与不同长度和序列的单链(ss)DNA寡核苷酸底物的晶体结构来研究这种行为。在这些结构中,5'核糖羟基埋于激酶活性位点,处于适合磷酸转移的正确排列位置。根据ssDNA的长度,前两个或三个核苷酸碱基排列有序。与磷酸核糖骨架和有序碱基都有大量接触。对于5'-GT DNA末端和5'-TG末端,有序碱基的位置、侧链接触和核苷酸间堆积相互作用显著不同。PNK在这些位置显示的碱基偏好归因于每种独特底物分子的酶结合相互作用和DNA构象的差异。