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      Golgi-situated endoplasmic reticulum α-1, 2-mannosidase contributes to the retrieval of ERAD substrates through a direct interaction with γ-COP

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          Abstract

          Endoplasmic reticulum (ER) α-1, 2-mannosidase and γ-COP contribute to a Golgi-based quality control module that facilitates the retrieval of captured ER-associated protein degradation substrates back to the ER.

          Abstract

          Endoplasmic reticulum (ER) α-1, 2-mannosidase (ERManI) contributes to ER-associated protein degradation (ERAD) by initiating the formation of degradation signals on misfolded N-linked glycoproteins. Despite its inferred intracellular location, we recently discovered that the mammalian homologue is actually localized to the Golgi complex. In the present study, the functional role of Golgi-situated ERManI was investigated. Mass spectrometry analysis and coimmunoprecipitation (co-IP) identified a direct interaction between ERManI and γ-COP, the gamma subunit of coat protein complex I (COPI) that is responsible for Golgi-to-ER retrograde cargo transport. The functional relationship was validated by the requirement of both ERManI and γ-COP to support efficient intracellular clearance of the classical ERAD substrate, null Hong Kong (NHK). In addition, site-directed mutagenesis of suspected γ-COP–binding motifs in the cytoplasmic tail of ERManI was sufficient to disrupt the physical interaction and ablate NHK degradation. Moreover, a physical interaction between NHK, ERManI, and γ-COP was identified by co-IP and Western blotting. RNA interference–mediated knockdown of γ-COP enhanced the association between ERManI and NHK, while diminishing the efficiency of ERAD. Based on these findings, a model is proposed in which ERManI and γ-COP contribute to a Golgi-based quality control module that facilitates the retrieval of captured ERAD substrates back to the ER.

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          Author and article information

          Contributors
          Role: Monitoring Editor
          Journal
          Mol Biol Cell
          Mol. Biol. Cell
          molbiolcell
          mbc
          Mol. Bio. Cell
          Molecular Biology of the Cell
          The American Society for Cell Biology
          1059-1524
          1939-4586
          15 April 2013
          : 24
          : 8
          : 1111-1121
          Affiliations
          [1] aDepartments of Pathology and Immunology, Baylor College of Medicine, Houston, TX 77030
          [2] cMolecular and Cellular Biology, Baylor College of Medicine, Houston, TX 77030
          [3] dMolecular Physiology and Biophysics, Baylor College of Medicine, Houston, TX 77030
          [4] bDepartment of Lymphoma and Myeloma, University of Texas, MD Anderson Cancer Center, Houston, TX 77054
          University of Pittsburgh
          Author notes
          1Address correspondence to: Richard N. Sifers ( rsifers@ 123456bcm.edu ).
          Article
          E12-12-0886
          10.1091/mbc.E12-12-0886
          3623633
          23427261
          56b850e8-a6a6-4e14-b428-400b456c6f1f
          © 2013 Pan et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License ( http://creativecommons.org/licenses/by-nc-sa/3.0).

          “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society of Cell BD; are registered trademarks of The American Society of Cell Biology.

          History
          : 17 December 2012
          : 08 February 2013
          : 14 February 2013
          Categories
          Articles
          Biosynthesis and Biodegradation

          Molecular biology
          Molecular biology

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