Ralec Céline, Henry Etienne, Lemor Mélanie, Killelea Tom, Henneke Ghislaine
Ifremer, Centre de Brest, LM2E, UMR 6197, Technopole Brest-Iroise, 29280 Plouzané, France.
CNRS, LM2E, UMR 6197, Technopole Brest-Iroise, 29280 Plouzané, France.
Nucleic Acids Res. 2017 Dec 1;45(21):12425-12440. doi: 10.1093/nar/gkx927.
Divalent metal ions, usually Mg2+, are required for both DNA synthesis and proofreading functions by DNA polymerases (DNA Pol). Although used as a non-reactive cofactor substitute for binding and crystallographic studies, Ca2+ supports DNA polymerization by only one DNA Pol, Dpo4. Here, we explore whether Ca2+-driven catalysis might apply to high-fidelity (HiFi) family B DNA Pols. The consequences of replacing Mg2+ by Ca2+ on base pairing at the polymerase active site as well as the editing of terminal nucleotides at the exonuclease active site of the archaeal Pyrococcus abyssi DNA Pol (PabPolB) are characterized and compared to other (families B, A, Y, X, D) DNA Pols. Based on primer extension assays, steady-state kinetics and ion-chased experiments, we demonstrate that Ca2+ (and other metal ions) activates DNA synthesis by PabPolB. While showing a slower rate of phosphodiester bond formation, nucleotide selectivity is improved over that of Mg2+. Further mechanistic studies show that the affinities for primer/template are higher in the presence of Ca2+ and reinforced by a correct incoming nucleotide. Conversely, no exonuclease degradation of the terminal nucleotides occurs with Ca2+. Evolutionary and mechanistic insights among DNA Pols are thus discussed.
二价金属离子,通常是Mg2+,是DNA聚合酶(DNA Pol)进行DNA合成和校对功能所必需的。虽然Ca2+被用作结合和晶体学研究的非反应性辅因子替代物,但它仅支持一种DNA Pol即Dpo4的DNA聚合作用。在这里,我们探讨Ca2+驱动的催化作用是否适用于高保真(HiFi)B族DNA Pols。我们对嗜热栖热放线菌DNA Pol(PabPolB)的聚合酶活性位点处用Ca2+替代Mg2+对碱基配对的影响以及在外切核酸酶活性位点对末端核苷酸的编辑进行了表征,并与其他(B、A、Y、X、D族)DNA Pols进行了比较。基于引物延伸测定、稳态动力学和离子追踪实验,我们证明Ca2+(以及其他金属离子)激活了PabPolB的DNA合成。虽然磷酸二酯键形成的速率较慢,但核苷酸选择性比Mg2+时有所提高。进一步的机理研究表明,在Ca2+存在下,对引物/模板的亲和力更高,并且被正确进入的核苷酸增强。相反,Ca2+不会导致末端核苷酸的外切核酸酶降解。因此,我们讨论了DNA Pols之间的进化和机理见解。