Mechanism of trinucleotide repeat expansion by MutSβ-MutL and contraction by FAN1
Ontology highlight
ABSTRACT: Triplet repeat expansions underlie multiple pathologies, including Huntington’s disease, often aris-ing in somatic non-dividing tissues such as the brain. Despite identification of genetic modifiers, mechanistic insights remain limited. Using purified human proteins, we show that MutL (MLH1-MLH3), stimulated by MutS (MSH2-MSH3), incises DNA opposite an extrahelical loop on the 5' side. This activity, with moderate sequence preference, generates DNA nicks enabling Pol-mediated displacement synthesis with the loop as a template, leading to expansions. PCNA con-fines these MutL incisions near the loop. FAN1, instead, preferentially targets the looped strand. RFC-PCNA stimulate and direct FAN1 nuclease to the 3' boundary of the loop while restricting its exonuclease activity. No pre-existing nick is required. Following FAN1-RFC-PCNA action, Pol re-moves the loop and resynthesizes DNA, causing contraction. FAN1 also directly inhibits MutL, preventing its activation by MutS. Our study illuminates both repeat expansion and contraction mechanisms and reveal the protective function of FAN1.
PROVIDER: PRJEB91651 | ENA |
REPOSITORIES: ENA
ACCESS DATA