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Non-flipping DNA glycosylase AlkD scans DNA without formation of a stable interrogation complex.


ABSTRACT: The multi-step base excision repair (BER) pathway is initiated by a set of enzymes, known as DNA glycosylases, able to scan DNA and detect modified bases among a vast number of normal bases. While DNA glycosylases in the BER pathway generally bend the DNA and flip damaged bases into lesion specific pockets, the HEAT-like repeat DNA glycosylase AlkD detects and excises bases without sequestering the base from the DNA helix. We show by single-molecule tracking experiments that AlkD scans DNA without forming a stable interrogation complex. This contrasts with previously studied repair enzymes that need to flip bases into lesion-recognition pockets and form stable interrogation complexes. Moreover, we show by design of a loss-of-function mutant that the bimodality in scanning observed for the structural homologue AlkF is due to a key structural differentiator between AlkD and AlkF; a positively charged β-hairpin able to protrude into the major groove of DNA.

SUBMITTER: Ahmadi A 

PROVIDER: S-EPMC8282808 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Non-flipping DNA glycosylase AlkD scans DNA without formation of a stable interrogation complex.

Ahmadi Arash A   Till Katharina K   Backe Paul Hoff PH   Blicher Pernille P   Diekmann Robin R   Schüttpelz Mark M   Glette Kyrre K   Tørresen Jim J   Bjørås Magnar M   Rowe Alexander D AD   Dalhus Bjørn B  

Communications biology 20210715 1


The multi-step base excision repair (BER) pathway is initiated by a set of enzymes, known as DNA glycosylases, able to scan DNA and detect modified bases among a vast number of normal bases. While DNA glycosylases in the BER pathway generally bend the DNA and flip damaged bases into lesion specific pockets, the HEAT-like repeat DNA glycosylase AlkD detects and excises bases without sequestering the base from the DNA helix. We show by single-molecule tracking experiments that AlkD scans DNA witho  ...[more]

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