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A glycolytic metabolite bypasses "two-hit" tumor suppression by BRCA2.

Authors :
Kong LR
Gupta K
Wu AJ
Perera D
Ivanyi-Nagy R
Ahmed SM
Tan TZ
Tan SL
Fuddin A
Sundaramoorthy E
Goh GS
Wong RTX
Costa ASH
Oddy C
Wong H
Patro CPK
Kho YS
Huang XZ
Choo J
Shehata M
Lee SC
Goh BC
Frezza C
Pitt JJ
Venkitaraman AR
Source :
Cell [Cell] 2024 Apr 25; Vol. 187 (9), pp. 2269-2287.e16. Date of Electronic Publication: 2024 Apr 11.
Publication Year :
2024

Abstract

Knudson's "two-hit" paradigm posits that carcinogenesis requires inactivation of both copies of an autosomal tumor suppressor gene. Here, we report that the glycolytic metabolite methylglyoxal (MGO) transiently bypasses Knudson's paradigm by inactivating the breast cancer suppressor protein BRCA2 to elicit a cancer-associated, mutational single-base substitution (SBS) signature in nonmalignant mammary cells or patient-derived organoids. Germline monoallelic BRCA2 mutations predispose to these changes. An analogous SBS signature, again without biallelic BRCA2 inactivation, accompanies MGO accumulation and DNA damage in Kras-driven, Brca2-mutant murine pancreatic cancers and human breast cancers. MGO triggers BRCA2 proteolysis, temporarily disabling BRCA2's tumor suppressive functions in DNA repair and replication, causing functional haploinsufficiency. Intermittent MGO exposure incites episodic SBS mutations without permanent BRCA2 inactivation. Thus, a metabolic mechanism wherein MGO-induced BRCA2 haploinsufficiency transiently bypasses Knudson's two-hit requirement could link glycolysis activation by oncogenes, metabolic disorders, or dietary challenges to mutational signatures implicated in cancer evolution.<br />Competing Interests: Declaration of interests A.R.V. is a member of Cell’s advisory board.<br /> (Copyright © 2024 The Author(s). Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1097-4172
Volume :
187
Issue :
9
Database :
MEDLINE
Journal :
Cell
Publication Type :
Academic Journal
Accession number :
38608703
Full Text :
https://doi.org/10.1016/j.cell.2024.03.006