The recently discovered human DNA polymerase lambda (DNA pol lambda) has been implicated in translesion DNA synthesis across abasic sites. One remarkable feature of this enzyme is its preference for Mn(2+) over Mg(2+) as the activating metal ion, but the molecular basis for this preference is not known. Here, we present a kinetic and thermodynamic analysis of the DNA polymerase reaction catalyzed by full length human DNA pol lambda, showing that Mn(2+) favors specifically the catalytic step of nucleotide incorporation. Besides acting as a poor coactivator for catalysis, Mg(2+) appeared to bind also to an allosteric site, resulting in the inhibition of the synthetic activity of DNA pol lambda and in an increased sensitivity to end product (p...
DNA polymerases require two divalent metal ions in the active site for catalysis. Mg2+ has been conf...
DNA polymerases catalyze a metal-dependent nucleotidyl transferase reaction during extension of a DN...
DNA polymerases use a general two-metal ion mechanism for DNA synthesis. Recent time-lapse crystallo...
The recently discovered human DNA polymerase lambda (DNA pol lambda) has been implicated in transles...
DNA polymerase η (Polη) is a translesion synthesis polymerase that can bypass different DNA lesions ...
Recent research on the structure and mechanism of DNA polymerases has continued to generate fundamen...
Studies on the mechanism by which DNA polymerase I of Escherichia coli discriminates between nucleot...
Although Mg2+ is the metal ion that functions as the cofactor for DNA polymerases (DNA pols) in vivo...
Polymerase eta (Pol eta) is a translesion synthesis DNA polymerase directly linked to cancer develop...
The effect of metal ion substitution on the dynamics of translesion DNA synthesis catalyzed by the b...
DNA polymerases play a crucial role in the cell cycle due to their involvement in genome replication...
AbstractRecent data suggest that DNA polymerases α and δ might have a coordinate functional role at ...
DNA polymerase (pol) lambda is homologous to pol beta and has intrinsic polymerase and terminal tran...
Divalent metal ions, usually Mg2+, are required for both DNA synthesis and proofreading functions by...
O.Domı́nguez and J.F.Ruiz contributed equally to this work This work is dedicated to the memory of P...
DNA polymerases require two divalent metal ions in the active site for catalysis. Mg2+ has been conf...
DNA polymerases catalyze a metal-dependent nucleotidyl transferase reaction during extension of a DN...
DNA polymerases use a general two-metal ion mechanism for DNA synthesis. Recent time-lapse crystallo...
The recently discovered human DNA polymerase lambda (DNA pol lambda) has been implicated in transles...
DNA polymerase η (Polη) is a translesion synthesis polymerase that can bypass different DNA lesions ...
Recent research on the structure and mechanism of DNA polymerases has continued to generate fundamen...
Studies on the mechanism by which DNA polymerase I of Escherichia coli discriminates between nucleot...
Although Mg2+ is the metal ion that functions as the cofactor for DNA polymerases (DNA pols) in vivo...
Polymerase eta (Pol eta) is a translesion synthesis DNA polymerase directly linked to cancer develop...
The effect of metal ion substitution on the dynamics of translesion DNA synthesis catalyzed by the b...
DNA polymerases play a crucial role in the cell cycle due to their involvement in genome replication...
AbstractRecent data suggest that DNA polymerases α and δ might have a coordinate functional role at ...
DNA polymerase (pol) lambda is homologous to pol beta and has intrinsic polymerase and terminal tran...
Divalent metal ions, usually Mg2+, are required for both DNA synthesis and proofreading functions by...
O.Domı́nguez and J.F.Ruiz contributed equally to this work This work is dedicated to the memory of P...
DNA polymerases require two divalent metal ions in the active site for catalysis. Mg2+ has been conf...
DNA polymerases catalyze a metal-dependent nucleotidyl transferase reaction during extension of a DN...
DNA polymerases use a general two-metal ion mechanism for DNA synthesis. Recent time-lapse crystallo...