TY - JOUR
T1 - Mutagenesis of human DNA polymerase λ
T2 - Essential roles of Tyr505 and Phe506 for both DNA polymerase and terminal transferase activities
AU - Shevelev, Igor
AU - Blanca, Giuseppina
AU - Villani, Giuseppe
AU - Ramadan, Kristijan
AU - Spadari, Silvio
AU - Hübscher, Ulrich
AU - Maga, Giovanni
PY - 2003/12/1
Y1 - 2003/12/1
N2 - DNA polymerase (pol) λ is homologous to pol β and has intrinsic polymerase and terminal transferase activities. However, nothing is known about the amino acid residues involved in these activites. In order to precisely define the nucleotide-binding site of human pol λ, we have mutagenised two amino acids, Tyr505 and the neighbouring Phe506, which were predicted by structural homology modelling to correspond to the Tyr271 and Phe272 residues of pol β, which are involved in nucleotide binding. Our analysis demonstrated that pol λ Phe506Arg/Gly mutants possess very low polymerase and terminal transferase activities as well as greatly reduced abilities for processive DNA synthesis and for carrying on translesion synthesis past an abasic site. The Tyr505Ala mutant, on the other hand, showed an altered nucleotide binding selectivity to perform the terminal transferase activity. Our results suggest the existence of a common nucleotide-binding site for the polymerase and terminal transferase activities of pol λ, as well as distinct roles of the amino acids Tyr505 and Phe506 in these two catalytic functions.
AB - DNA polymerase (pol) λ is homologous to pol β and has intrinsic polymerase and terminal transferase activities. However, nothing is known about the amino acid residues involved in these activites. In order to precisely define the nucleotide-binding site of human pol λ, we have mutagenised two amino acids, Tyr505 and the neighbouring Phe506, which were predicted by structural homology modelling to correspond to the Tyr271 and Phe272 residues of pol β, which are involved in nucleotide binding. Our analysis demonstrated that pol λ Phe506Arg/Gly mutants possess very low polymerase and terminal transferase activities as well as greatly reduced abilities for processive DNA synthesis and for carrying on translesion synthesis past an abasic site. The Tyr505Ala mutant, on the other hand, showed an altered nucleotide binding selectivity to perform the terminal transferase activity. Our results suggest the existence of a common nucleotide-binding site for the polymerase and terminal transferase activities of pol λ, as well as distinct roles of the amino acids Tyr505 and Phe506 in these two catalytic functions.
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U2 - 10.1093/nar/gkg896
DO - 10.1093/nar/gkg896
M3 - Article
C2 - 14627824
AN - SCOPUS:0344668821
SN - 0305-1048
VL - 31
SP - 6916
EP - 6925
JO - Nucleic Acids Research
JF - Nucleic Acids Research
IS - 23
ER -