4.6 Article

The autism-linked UBE3A T485A mutant E3 ubiquitin ligase activates the Wnt/-catenin pathway by inhibiting the proteasome

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 292, 期 30, 页码 12503-12515

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M117.788448

关键词

autism; -catenin; proteasome; proteomics; Wnt signaling; E6-AP; UBE3A

资金

  1. Angelman Syndrome Foundation
  2. National Institute of Mental Health [R01MH093372]
  3. National Institutes of Health Pioneer Award [DP1ES024088]
  4. Simons Foundation Autism Research Initiative Bridge to Independence Award [387972]
  5. Lymphoma Research Foundation
  6. Susan G. Komen Foundation [CCR14298820]
  7. National Institutes of Health [R01GM120309, R01CA187799]
  8. Gabrielle's Angel Foundation
  9. National Institutes of Health

向作者/读者索取更多资源

UBE3A is a HECT domain E3 ubiquitin ligase whose dysfunction is linked to autism, Angelman syndrome, and cancer. Recently, we characterized a de novo autism-linked UBE3A mutant (UBE3A(T485A)) that disrupts phosphorylation control of UBE3A activity. Through quantitative proteomics and reporter assays, we found that the UBE3A(T485A) protein ubiquitinates multiple proteasome subunits, reduces proteasome subunit abundance and activity, stabilizes nuclear -catenin, and stimulates canonical Wnt signaling more effectively than wild-type UBE3A. We also found that UBE3A(T485A) activates Wnt signaling to a greater extent in cells with low levels of ongoing Wnt signaling, suggesting that cells with low basal Wnt activity are particularly vulnerable to UBE3A(T485A) mutation. Ligase-dead UBE3A did not stimulate Wnt pathway activation. Overexpression of several proteasome subunits reversed the effect of UBE3A(T485A) on Wnt signaling. We also observed that subunits that interact with UBE3A and affect Wnt signaling are located along one side of the 19S regulatory particle, indicating a previously unrecognized spatial organization to the proteasome. Altogether, our findings indicate that UBE3A regulates Wnt signaling in a cell context-dependent manner and that an autism-linked mutation exacerbates these signaling effects. Our study has broad implications for human disorders associated with UBE3A gain or loss of function and suggests that dysfunctional UBE3A might affect additional proteins and pathways that are sensitive to proteasome activity.

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