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Journal Article

Hrd1 forms the retrotranslocation pore regulated by auto-ubiquitination and binding of misfolded proteins.

MPS-Authors
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Vasic,  V.
Research Group of Membrane Protein Biochemistry, MPI for Biophysical Chemistry, Max Planck Society;

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Denkert,  N.
Research Group of Membrane Protein Biochemistry, MPI for Biophysical Chemistry, Max Planck Society;

/persons/resource/persons245613

Schmidt,  C.
Research Group of Membrane Protein Biochemistry, MPI for Biophysical Chemistry, Max Planck Society;

/persons/resource/persons15710

Riedel,  D.
Facility for Electron Microscopy, MPI for biophysical chemistry, Max Planck Society;

/persons/resource/persons15866

Stein,  A.
Research Group of Membrane Protein Biochemistry, MPI for Biophysical Chemistry, Max Planck Society;

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3195895.pdf
(Publisher version), 8MB

Supplementary Material (public)

3195895_Suppl_1.xlsx
(Supplementary material), 53MB

3195895_Suppl_2.pdf
(Supplementary material), 327KB

3195895_Suppl_3.xlsx
(Supplementary material), 625KB

3195895_Suppl_4.xlsx
(Supplementary material), 23KB

3195895_Suppl_5.pdf
(Supplementary material), 2MB

3195895_Suppl_6.xlsx
(Supplementary material), 4MB

3195895_Suppl_7.pdf
(Supplementary material), 2MB

Citation

Vasic, V., Denkert, N., Schmidt, C., Riedel, D., Stein, A., & Meinecke, M. (2020). Hrd1 forms the retrotranslocation pore regulated by auto-ubiquitination and binding of misfolded proteins. Nature Cell Biology, 22, 274-281. doi:10.1038/s41556-020-0473-4.


Cite as: https://hdl.handle.net/21.11116/0000-0005-BD68-2
Abstract
During endoplasmic-reticulum-associated protein degradation (ERAD), misfolded proteins are polyubiquitinated, extracted from the ER membrane and degraded by the proteasome1-4. In a process called retrotranslocation, misfolded luminal proteins first need to traverse the ER membrane before ubiquitination can occur in the cytosol. It was suggested that the membrane-embedded ubiquitin ligase Hrd1 forms a retrotranslocation pore regulated by cycles of auto- and deubiquitination5-8. However, the mechanism by which auto-ubiquitination affects Hrd1 and allows polypeptides to cross the membrane and whether Hrd1 forms a membrane-spanning pore remained unknown. Here, using purified Hrd1 incorporated into different model membranes, we show that Hrd1 auto-ubiquitination leads to the opening of a pore. Substrate binding increases the pore size and its activity, whereas deubiquitination closes the pore and renders it unresponsive to substrate. We identify two binding sites for misfolded proteins in Hrd1, a low-affinity luminal site and a high-affinity cytoplasmic site formed following auto-ubiquitination of specific lysine residues in Hrd1's RING domain. We propose that the affinity difference between the luminal and cytoplasmic binding sites provides the initial driving force for substrate movement through Hrd1.