FAN1 controls mismatch repair complex assembly via MLH1 retention to stabilize CAG repeat expansion in Huntington's disease

FAN1通过MLH1的保留来控制错配修复复合物的组装,从而稳定亨廷顿病中的CAG重复序列扩增。

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作者:Robert Goold ,Joseph Hamilton ,Thomas Menneteau ,Michael Flower ,Emma L Bunting ,Sarah G Aldous ,Antonio Porro ,José R Vicente ,Nicholas D Allen ,Hilary Wilkinson ,Gillian P Bates ,Alessandro A Sartori ,Konstantinos Thalassinos ,Gabriel Balmus ,Sarah J Tabrizi

Abstract

CAG repeat expansion in the HTT gene drives Huntington's disease (HD) pathogenesis and is modulated by DNA damage repair pathways. In this context, the interaction between FAN1, a DNA-structure-specific nuclease, and MLH1, member of the DNA mismatch repair pathway (MMR), is not defined. Here, we identify a highly conserved SPYF motif at the N terminus of FAN1 that binds to MLH1. Our data support a model where FAN1 has two distinct functions to stabilize CAG repeats. On one hand, it binds MLH1 to restrict its recruitment by MSH3, thus inhibiting the assembly of a functional MMR complex that would otherwise promote CAG repeat expansion. On the other hand, it promotes accurate repair via its nuclease activity. These data highlight a potential avenue for HD therapeutics in attenuating somatic expansion. Keywords: CAG instability; DNA repair; FAN1; FAN1 nuclease activity; GWAS; Huntington’s disease; MLH1; MSH3; mismatch repair; repeat expansion.

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