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A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage

[Image: see text] Mammalian MutY glycosylases have a unique architecture that features an interdomain connector (IDC) that joins the catalytic N-terminal domain and 8-oxoguanine (OG) recognition C-terminal domain. The IDC has been shown to be a hub for interactions with protein partners involved in...

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Autores principales: Engstrom, Lisa M., Brinkmeyer, Megan K., Ha, Yang, Raetz, Alan G., Hedman, Britt, Hodgson, Keith O., Solomon, Edward I., David, Sheila S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063174/
https://www.ncbi.nlm.nih.gov/pubmed/24841533
http://dx.doi.org/10.1021/ja502942d
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author Engstrom, Lisa M.
Brinkmeyer, Megan K.
Ha, Yang
Raetz, Alan G.
Hedman, Britt
Hodgson, Keith O.
Solomon, Edward I.
David, Sheila S.
author_facet Engstrom, Lisa M.
Brinkmeyer, Megan K.
Ha, Yang
Raetz, Alan G.
Hedman, Britt
Hodgson, Keith O.
Solomon, Edward I.
David, Sheila S.
author_sort Engstrom, Lisa M.
collection PubMed
description [Image: see text] Mammalian MutY glycosylases have a unique architecture that features an interdomain connector (IDC) that joins the catalytic N-terminal domain and 8-oxoguanine (OG) recognition C-terminal domain. The IDC has been shown to be a hub for interactions with protein partners involved in coordinating downstream repair events and signaling apoptosis. Herein, a previously unidentified zinc ion and its coordination by three Cys residues of the IDC region of eukaryotic MutY organisms were characterized by mutagenesis, ICP-MS, and EXAFS. In vitro kinetics and cellular assays on WT and Cys to Ser mutants have revealed an important function for zinc coordination on overall protein stability, iron–sulfur cluster insertion, and ability to mediate DNA damage repair. We propose that this “zinc linchpin” motif serves to structurally organize the IDC and coordinate the damage recognition and base excision functions of the C- and N-terminal domains.
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spelling pubmed-40631742015-05-19 A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage Engstrom, Lisa M. Brinkmeyer, Megan K. Ha, Yang Raetz, Alan G. Hedman, Britt Hodgson, Keith O. Solomon, Edward I. David, Sheila S. J Am Chem Soc [Image: see text] Mammalian MutY glycosylases have a unique architecture that features an interdomain connector (IDC) that joins the catalytic N-terminal domain and 8-oxoguanine (OG) recognition C-terminal domain. The IDC has been shown to be a hub for interactions with protein partners involved in coordinating downstream repair events and signaling apoptosis. Herein, a previously unidentified zinc ion and its coordination by three Cys residues of the IDC region of eukaryotic MutY organisms were characterized by mutagenesis, ICP-MS, and EXAFS. In vitro kinetics and cellular assays on WT and Cys to Ser mutants have revealed an important function for zinc coordination on overall protein stability, iron–sulfur cluster insertion, and ability to mediate DNA damage repair. We propose that this “zinc linchpin” motif serves to structurally organize the IDC and coordinate the damage recognition and base excision functions of the C- and N-terminal domains. American Chemical Society 2014-05-19 2014-06-04 /pmc/articles/PMC4063174/ /pubmed/24841533 http://dx.doi.org/10.1021/ja502942d Text en Copyright © 2014 American Chemical Society
spellingShingle Engstrom, Lisa M.
Brinkmeyer, Megan K.
Ha, Yang
Raetz, Alan G.
Hedman, Britt
Hodgson, Keith O.
Solomon, Edward I.
David, Sheila S.
A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage
title A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage
title_full A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage
title_fullStr A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage
title_full_unstemmed A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage
title_short A Zinc Linchpin Motif in the MUTYH Glycosylase Interdomain Connector Is Required for Efficient Repair of DNA Damage
title_sort zinc linchpin motif in the mutyh glycosylase interdomain connector is required for efficient repair of dna damage
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063174/
https://www.ncbi.nlm.nih.gov/pubmed/24841533
http://dx.doi.org/10.1021/ja502942d
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