Literature DB >> 34819670

FAM72A antagonizes UNG2 to promote mutagenic repair during antibody maturation.

Yuqing Feng1, Conglei Li1,2, Jessica A Stewart3, Philip Barbulescu1, Noé Seija Desivo4,5, Alejandro Álvarez-Quilón6,7, Rossanna C Pezo8,9, Madusha L W Perera3, Katherine Chan10, Amy Hin Yan Tong10, Rukshana Mohamad-Ramshan3, Maribel Berru1, Diana Nakib1, Gavin Li1, Gholam Ali Kardar11, James R Carlyle1, Jason Moffat6,10,12, Daniel Durocher6,7, Javier M Di Noia4,5, Ashok S Bhagwat3,13, Alberto Martin14.   

Abstract

Activation-induced cytidine deaminase (AID) catalyses the deamination of deoxycytidines to deoxyuracils within immunoglobulin genes to induce somatic hypermutation and class-switch recombination1,2. AID-generated deoxyuracils are recognized and processed by subverted base-excision and mismatch repair pathways that ensure a mutagenic outcome in B cells3-6. However, why these DNA repair pathways do not accurately repair AID-induced lesions remains unknown. Here, using a genome-wide CRISPR screen, we show that FAM72A is a major determinant for the error-prone processing of deoxyuracils. Fam72a-deficient CH12F3-2 B cells and primary B cells from Fam72a-/- mice exhibit reduced class-switch recombination and somatic hypermutation frequencies at immunoglobulin and Bcl6 genes, and reduced genome-wide deoxyuracils. The somatic hypermutation spectrum in B cells from Fam72a-/- mice is opposite to that observed in mice deficient in uracil DNA glycosylase 2 (UNG2)7, which suggests that UNG2 is hyperactive in FAM72A-deficient cells. Indeed, FAM72A binds to UNG2, resulting in reduced levels of UNG2 protein in the G1 phase of the cell cycle, coinciding with peak AID activity. FAM72A therefore causes U·G mispairs to persist into S phase, leading to error-prone processing by mismatch repair. By disabling the DNA repair pathways that normally efficiently remove deoxyuracils from DNA, FAM72A enables AID to exert its full effects on antibody maturation. This work has implications in cancer, as the overexpression of FAM72A that is observed in many cancers8 could promote mutagenesis.
© 2021. The Author(s), under exclusive licence to Springer Nature Limited.

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Year:  2021        PMID: 34819670      PMCID: PMC9425297          DOI: 10.1038/s41586-021-04144-4

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   69.504


  1 in total

1.  Proximity to AGCT sequences dictates MMR-independent versus MMR-dependent mechanisms for AID-induced mutation via UNG2.

Authors:  Eddy Sanchai Thientosapol; George Sharbeen; K K Edwin Lau; Daniel Bosnjak; Timothy Durack; Igor Stevanovski; Wolfgang Weninger; Christopher J Jolly
Journal:  Nucleic Acids Res       Date:  2017-04-07       Impact factor: 16.971

  1 in total
  7 in total

1.  Neonatal LTβR signaling is required for the accumulation of eosinophils in the inflamed adult mesenteric lymph node.

Authors:  Conglei Li; Lesley A Ward; Albert Nguyen; Evelyn Lam; Dragos Dasoveanu; Musaddeque Ahmed; Kei Haniuda; Matthew B Buechler; Housheng Hansen He; Burkhard Ludewig; Kelly Marshall McNagny; Jennifer L Gommerman
Journal:  Mucosal Immunol       Date:  2022-02-18       Impact factor: 7.313

Review 2.  DNA Damage Response and Repair in Adaptive Immunity.

Authors:  Sha Luo; Ruolin Qiao; Xuefei Zhang
Journal:  Front Cell Dev Biol       Date:  2022-05-17

Review 3.  Diversity upon diversity: linking DNA double-strand break repair to blood cancer health disparities.

Authors:  Jason N Sterrenberg; Melissa L Folkerts; Valeria Rangel; Sarah Eugenie Lee; Nicholas R Pannunzio
Journal:  Trends Cancer       Date:  2022-01-31

4.  Expression of Constitutive Fusion of Ubiquitin to PCNA Restores the Level of Immunoglobulin A/T Mutations During Somatic Hypermutation in the Ramos Cell Line.

Authors:  Leticia K Lerner; Dorine Bonte; Morwenna Le Guillou; Mahwish Mian Mohammad; Zeinab Kasraian; Alain Sarasin; Emmanuelle Despras; Said Aoufouchi
Journal:  Front Immunol       Date:  2022-04-01       Impact factor: 8.786

5.  Deep learning model of somatic hypermutation reveals importance of sequence context beyond hotspot targeting.

Authors:  Catherine Tang; Artem Krantsevich; Thomas MacCarthy
Journal:  iScience       Date:  2021-12-20

6.  HMCES protects immunoglobulin genes specifically from deletions during somatic hypermutation.

Authors:  Lizhen Wu; Vipul Shukla; Anurupa Devi Yadavalli; Ravi K Dinesh; Dijin Xu; Anjana Rao; David G Schatz
Journal:  Genes Dev       Date:  2022-04-21       Impact factor: 12.890

Review 7.  Inborn errors of immunity caused by defects in the DNA damage response pathways: Importance of minimizing treatment-related genotoxicity.

Authors:  Benjamin Fournier; Nizar Mahlaoui; Despina Moshous; Jean-Pierre de Villartay
Journal:  Pediatr Allergy Immunol       Date:  2022-06       Impact factor: 5.464

  7 in total

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