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Template strand scrunching during DNA gap repair synthesis by human polymerase lambda.


ABSTRACT: Family X polymerases such as DNA polymerase lambda (Pol lambda) are well suited for filling short gaps during DNA repair because they simultaneously bind both the 5' and 3' ends of short gaps. DNA binding and gap filling are well characterized for 1-nucleotide (nt) gaps, but the location of yet-to-be-copied template nucleotides in longer gaps is unknown. Here we present crystal structures revealing that, when bound to a 2-nt gap, Pol lambda scrunches the template strand and binds the additional uncopied template base in an extrahelical position within a binding pocket that comprises three conserved amino acids. Replacing these amino acids with alanine results in less processive gap filling and less efficient NHEJ when 2-nt gaps are involved. Thus, akin to scrunching by RNA polymerase during transcription initiation, scrunching occurs during gap filling DNA synthesis associated with DNA repair.

SUBMITTER: Garcia-Diaz M 

PROVIDER: S-EPMC2767187 | biostudies-literature | 2009 Sep

REPOSITORIES: biostudies-literature

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Template strand scrunching during DNA gap repair synthesis by human polymerase lambda.

Garcia-Diaz Miguel M   Bebenek Katarzyna K   Larrea Andres A AA   Havener Jody M JM   Perera Lalith L   Krahn Joseph M JM   Pedersen Lars C LC   Ramsden Dale A DA   Kunkel Thomas A TA  

Nature structural & molecular biology 20090823 9


Family X polymerases such as DNA polymerase lambda (Pol lambda) are well suited for filling short gaps during DNA repair because they simultaneously bind both the 5' and 3' ends of short gaps. DNA binding and gap filling are well characterized for 1-nucleotide (nt) gaps, but the location of yet-to-be-copied template nucleotides in longer gaps is unknown. Here we present crystal structures revealing that, when bound to a 2-nt gap, Pol lambda scrunches the template strand and binds the additional  ...[more]

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