RPA guides UNG to uracil in ssDNA to facilitate antibody class switching and repair of mutagenic uracil at the replication fork

Author:

Hayran Abdul B1,Liabakk Nina B1,Aas Per A1,Kusnierczyk Anna12,Vågbø Cathrine B12ORCID,Sarno Antonio1,Iveland Tobias S13,Chawla Konika14,Zahn Astrid5,Di Noia Javier M56ORCID,Slupphaug Geir127ORCID,Kavli Bodil17ORCID

Affiliation:

1. Department of Clinical and Molecular Medicine, NTNU Norwegian University of Science and Technology , NO-7491 Trondheim , Norway

2. PROMEC - Proteomics and Modomics Experimental Core Facility at NTNU and the Central Norway Regional Health Authority , NO-7491 Trondheim , Norway

3. Cancer Clinic, St. Olav's Hospital, Trondheim University Hospital , NO-7006 Trondheim , Norway

4. BioCore - Bioinformatics Core Facility at NTNU and the Central Norway Regional Health Authority , NO-7491 Trondheim , Norway

5. Institut de Recherches Cliniques de Montréal , 110 Av des Pins Ouest, Montréal , QC  H2W 1R7 , Canada

6. Département of Médicine, Université de Montréal  H3C 3J7  Montréal , Québec , Canada

7. Clinic of Laboratory Medicine, St. Olav's Hospital, Trondheim University Hospital , NO-7006 Trondheim , Norway

Abstract

Abstract Activation-induced cytidine deaminase (AID) interacts with replication protein A (RPA), the major ssDNA-binding protein, to promote deamination of cytosine to uracil in transcribed immunoglobulin (Ig) genes. Uracil-DNA glycosylase (UNG) acts in concert with AID during Ig diversification. In addition, UNG preserves genome integrity by base-excision repair (BER) in the overall genome. How UNG is regulated to support both mutagenic processing and error-free repair remains unknown. UNG is expressed as two isoforms, UNG1 and UNG2, which both contain an RPA-binding helix that facilitates uracil excision from RPA-coated ssDNA. However, the impact of this interaction in antibody diversification and genome maintenance has not been investigated. Here, we generated B-cell clones with targeted mutations in the UNG RPA-binding motif, and analysed class switch recombination (CSR), mutation frequency (5′ Ig Sμ), and genomic uracil in clones representing seven Ung genotypes. We show that the UNG:RPA interaction plays a crucial role in both CSR and repair of AID-induced uracil at the Ig loci. By contrast, the interaction had no significant impact on total genomic uracil levels. Thus, RPA coordinates UNG during CSR and pre-replicative repair of mutagenic uracil in ssDNA but is not essential in post-replicative and canonical BER of uracil in dsDNA.

Funder

The Liaison Committee between the Central Norway regional Health Authority and Norwegian University of Science and Technology

Norwegian University of Science and Technology

Canadian Institutes of Health Research

Fonds de Recherche de Québec – Santé

Central Norway Regional Health Authority

National Network of Advanced Proteomics Infrastructure (NAPI) funded by the RCN INFRASTRUKTUR-program

Publisher

Oxford University Press (OUP)

Subject

Genetics

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