Single molecule analysis indicates stimulation of MUTYH by UV-DDB through enzyme turnover

Author:

Jang Sunbok12,Schaich Matthew A12,Khuu Cindy3,Schnable Brittani L14,Majumdar Chandrima3,Watkins Simon C15,David Sheila S3,Van Houten Bennett124ORCID

Affiliation:

1. UPMC Hillman Cancer Center, University of Pittsburgh, Pittsburgh, PA 15213, USA

2. Department of Pharmacology and Chemical Biology, School of Medicine, University of Pittsburgh, Pittsburgh, PA 15213, USA

3. Department of Chemistry and Biochemistry, Molecular, Cell and Development Graduate Group, University of California, Davis, One Shields Avenue, Davis, CA 95616, USA

4. Molecular Biophysics and Structural Biology Graduate Program, University of Pittsburg, PA 15260, USA

5. Center for Biologic Imaging, University of Pittsburgh, Pittsburgh, PA 15261, USA

Abstract

Abstract The oxidative base damage, 8-oxo-7,8-dihydroguanine (8-oxoG) is a highly mutagenic lesion because replicative DNA polymerases insert adenine (A) opposite 8-oxoG. In mammalian cells, the removal of A incorporated across from 8-oxoG is mediated by the glycosylase MUTYH during base excision repair (BER). After A excision, MUTYH binds avidly to the abasic site and is thus product inhibited. We have previously reported that UV-DDB plays a non-canonical role in BER during the removal of 8-oxoG by 8-oxoG glycosylase, OGG1 and presented preliminary data that UV-DDB can also increase MUTYH activity. In this present study we examine the mechanism of how UV-DDB stimulates MUTYH. Bulk kinetic assays show that UV-DDB can stimulate the turnover rate of MUTYH excision of A across from 8-oxoG by 4–5-fold. Electrophoretic mobility shift assays and atomic force microscopy suggest transient complex formation between MUTYH and UV-DDB, which displaces MUTYH from abasic sites. Using single molecule fluorescence analysis of MUTYH bound to abasic sites, we show that UV-DDB interacts directly with MUTYH and increases the mobility and dissociation rate of MUTYH. UV-DDB decreases MUTYH half-life on abasic sites in DNA from 8800 to 590 seconds. Together these data suggest that UV-DDB facilitates productive turnover of MUTYH at abasic sites during 8-oxoG:A repair.

Funder

NIH

National Institute of Environmental Health Sciences

National Institute of General Medical Sciences

Publisher

Oxford University Press (OUP)

Subject

Genetics

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