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Differential furanose selection in the active sites of archaeal DNA polymerases probed by fixed-conformation nucleotide analogues

机译:固定构象核苷酸类似物探测古细菌DNA聚合酶活性位点的呋喃糖差异选择

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DNA polymerases select for the incorporation of deoxyribonucleotide triphosphates (dNTPs) using amino acid side-chains that act as a "steric-gate" to bar improper incorporation of rNTPs. An additional factor in the selection of nucleotide substrates resides in the preferred geometry for the furanose moiety of the incoming nucleotide triphosphate. We have probed the role of sugar geometry during nucleotide selection by model DNA polymerases from Sulfolobus solfataricus using fixed conformation nucleotide analogues. North-methanocarba-dATP (N-MC-dATP) locks the central ring into a RNA-type (C2′-exo, North) conformation near a C3′-endo pucker, and South-methanocarba-dATP (S-MC-dATP) locks the central ring system into a (C3′-exo, South) conformation near a C2′-endo pucker. Dpo4 preferentially inserts N-MC-dATP and in the crystal structure of Dpo4 in complex with N-MC-dAMP, the nucleotide analogue superimposes almost perfectly with Dpo4 bound to unmodified dATP. Biochemical assays indicate that the S. solfataricus B-family DNA polymerase Dpo1 can insert and extend from both N-MC-dATP and S-MC-dATP. In this respect, Dpo1 is unexpectedly more tolerant of substrate conformation than Dpo4. The crystal structure of Dpo4 bound to S-MC-dADP shows that poor incorporation of the Southern pucker by the Y-family polymerase results from a hydrogen bond between the 3′-OH group of the nucleotide analogue and the OH group of the steric gate residue, Tyr12, shifting the S-MC-dADP molecule away from the dNTP binding pocket and distorting the base pair at the primer-template junction. These results provide insights into substrate specificity of DNA polymerases, as well as molecular mechanisms that act as a barrier against insertion of rNTPs.
机译:DNA聚合酶使用氨基酸侧链选择脱氧核糖核苷酸三磷酸(dNTP)的掺入,氨基酸侧链充当“空间门”,以阻止rNTP的不正确掺入。选择核苷酸底物的另一个因素在于进入的核苷酸三磷酸的呋喃糖部分的优选几何形状。我们已经通过使用固定构象核苷酸类似物从Sulfolobus solfataricus的模型DNA聚合酶探索了核苷酸选择过程中糖几何结构的作用。 North-methanocarba-dATP(N-MC-dATP)将中央环锁定为C3'-endo折叠附近的RNA型(C2'-exo,North)构象,而South-methanocarba-dATP(S-MC-dATP) )将中央环系统锁定在C2'-endo褶皱附近的(C3'-exo,South)构型。 Dpo4优先插入N-MC-dATP,并且在与N-MC-dAMP复合的Dpo4晶体结构中,核苷酸类似物几乎与与未修饰的dATP结合的Dpo4完全重叠。生化分析表明,S。solfataricus B家族DNA聚合酶Dpo1可以从N-MC-dATP和S-MC-dATP插入和延伸。在这方面,Dpo1出乎意料地比Dpo4更能耐受底物构象。与S-MC-dADP结合的Dpo4的晶体结构表明,Y族聚合酶不能很好地掺入Southern Pucker,这是由于核苷酸类似物的3'-OH基与空间门的OH基之间存在氢键引起的残基Tyr12,将S-MC-dADP分子从dNTP结合袋中移出,并使引物-模板连接处的碱基对变形。这些结果为深入了解DNA聚合酶的底物特异性以及作为阻止rNTP插入的分子机制提供了见识。

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