Evidence map›Paper›PMID 40781771›Full record

ArticleMolecular therapy : the journal of the American Society of Gene Therapy2025

Biallelic BRF2 mutations disrupt redox homeostasis as etiological factors in syndromic immunodeficiency and developmental disorders.

Seobin Yoon, Seungbok Lee, Haeyoon Kwon, Hyo-Seung Kim, Jeong H Joo, Soogil Hong, Soo Yeon Kim, Sesong Jang, Hyunju Lee, Hyoung Soo Choi and 10 more

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Article in Molecular therapy : the journal of the American Society of Gene Therapy, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

20 authors.

Seobin YoonDepartment of Life Science, Chung-Ang University, Seoul, Republic of Korea.
Seungbok LeeDepartment of Genomic Medicine, Seoul National University Hospital, Seoul, Republic of Korea; Department of Pediatrics, Seoul National University College of Medicine, Seoul National University Children's Hospital, Seoul, Republic of Korea.
Haeyoon KwonDepartment of Medicine, Seoul National University College of Medicine, Seoul, Republic of Korea.
Hyo-Seung KimDepartment of Life Science, Chung-Ang University, Seoul, Republic of Korea.
Jeong H JooDepartment of Life Science, Chung-Ang University, Seoul, Republic of Korea.
Soogil HongDepartment of Life Science, Chung-Ang University, Seoul, Republic of Korea.
Soo Yeon KimDepartment of Genomic Medicine, Seoul National University Hospital, Seoul, Republic of Korea; Department of Pediatrics, Seoul National University College of Medicine, Seoul National University Children's Hospital, Seoul, Republic of Korea.
Sesong JangDepartment of Pediatrics, Seoul National University College of Medicine, Seoul National University Children's Hospital, Seoul, Republic of Korea.
Hyunju LeeDepartment of Pediatrics, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.
Hyoung Soo ChoiDepartment of Pediatrics, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.
Anna ChoDepartment of Pediatrics, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.
Soyoung JeongDepartment of Biomedical Sciences, Seoul National University Graduate School, Seoul, Republic of Korea.
Christine Suh-Yun JohDepartment of Biomedical Sciences, Seoul National University Graduate School, Seoul, Republic of Korea.
Hyeonseo OhDepartment of Medicine, Seoul National University College of Medicine, Seoul, Republic of Korea.
Eui-Hwan ChoiDepartment of Biotechnology, Korea National University of Transportation, Chungju, Chungbuk, Republic of Korea.
Murim ChoiDepartment of Medicine, Seoul National University College of Medicine, Seoul, Republic of Korea.
Kangmo AhnDepartment of Pediatrics, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Republic of Korea; Department of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences & Technology, Seoul, Republic of Korea.
Hyun Je KimDepartment of Biomedical Sciences, Seoul National University Graduate School, Seoul, Republic of Korea; Genomic Medicine Institute, Seoul National University College of Medicine, Seoul, Republic of Korea.
Keun Pil KimDepartment of Life Science, Chung-Ang University, Seoul, Republic of Korea. Electronic address: kpkim@cau.ac.kr.
Jong-Hee ChaeDepartment of Genomic Medicine, Seoul National University Hospital, Seoul, Republic of Korea; Department of Pediatrics, Seoul National University College of Medicine, Seoul National University Children's Hospital, Seoul, Republic of Korea. Electronic address: chaeped1@snu.ac.kr.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

TFIIB-related factor 2 (BRF2) is a critical component in the recruitment of RNA polymerase III (RNA Pol III) to type III promoters containing a TATA box. These promoters regulate the expression of key elements such as U6 spliceosomal RNA, the tRNA processing enzyme RNase P, and selenocysteine tRNA. Despite the essential role of BRF2, the genetic disorders associated with BRF2 mutations and their molecular pathogenesis remain poorly defined. In this study, we identified and characterized novel biallelic BRF2 variants with impaired RNA Pol III activity in a familial case presenting with multisystem anomalies, malignancy, and primary immunodeficiency. Whole-exome sequencing revealed compound heterozygous BRF2 variants predicted to disrupt interaction with the TATA box-binding protein. Subsequent gene expression profiling of the patient's whole blood cells using single-cell RNA sequencing was conducted. Clinically, the patient exhibited recurrent infections and hypogammaglobulinemia in early childhood, which improved over time but was followed by the development of low-grade B cell lymphoma during adolescence, necessitating chemotherapy. Functional analyses in human cells expressing the BRF2 variants demonstrated defective BRF2-dependent RNA Pol III transcription of redox-regulating genes, specifically GPX1 and GPX4. These findings establish a pathogenic link between BRF2 dysfunction and disrupted redox homeostasis, offering mechanistic insights into the hemato-immunological and developmental abnormalities observed in affected individuals and highlighting potential implications for clinical management.

Indexed as

Developmental DisabilitiesHomeostasisImmunologic Deficiency SyndromesMutationAllelesChildExome SequencingFemaleHumansMaleOxidation-ReductionPedigreeRNA Polymerase IIIRNA Polymerase IIIBRF2glutathione peroxidasesredox homeostasisRNA polymerase IIItype III promoters

Identifiers

PMID40781771
PMCPMC12628152

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.