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Amnionless-mediated glycosylation is crucial for cell surface targeting of cubilin in renal and intestinal cells.


ABSTRACT: Mutations in either cubilin (CUBN) or amnionless (AMN) genes cause Imerslund-Gräsbeck syndrome (IGS), a hereditary disease characterised by anaemia attributed to selective intestinal malabsorption of cobalamin and low-molecular weight proteinuria. Although cubilin protein does not have a transmembrane segment, it functions as a multi-ligand receptor by binding to the transmembrane protein, amnionless. We established a system to quantitatively analyse membrane targeting of the protein complex in cultured renal and intestinal cells and analysed the pathogenic mechanisms of mutations found in IGS patients. A novel CUBN mutation, several previously reported CUBN missense mutations and all previously reported AMN missense mutations resulted in endoplasmic reticulum (ER) retention and completely inhibited amnionless-dependent plasma membrane expression of cubilin. The ER retention of cubilin and amnionless was confirmed in renal proximal tubular cells of a patient with IGS. Notably, the interaction between cubilin and amnionless was not sufficient, but amnionless-mediated glycosylation of cubilin was necessary for their surface expression. Quantitative mass spectrometry and mutagenesis demonstrated that N-linked glycosylation of at least 4 residues of cubilin protein was required for its surface targeting. These results delineated the molecular mechanisms of membrane trafficking of cubilin in renal and intestinal cells.

SUBMITTER: Udagawa T 

PROVIDER: S-EPMC5799345 | biostudies-literature | 2018 Feb

REPOSITORIES: biostudies-literature

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Amnionless-mediated glycosylation is crucial for cell surface targeting of cubilin in renal and intestinal cells.

Udagawa Tomohiro T   Harita Yutaka Y   Miura Kenichiro K   Mitsui Jun J   Ode Koji L KL   Morishita Shinichi S   Urae Seiya S   Kanda Shoichiro S   Kajiho Yuko Y   Tsurumi Haruko H   Ueda Hiroki R HR   Tsuji Shoji S   Saito Akihiko A   Oka Akira A  

Scientific reports 20180205 1


Mutations in either cubilin (CUBN) or amnionless (AMN) genes cause Imerslund-Gräsbeck syndrome (IGS), a hereditary disease characterised by anaemia attributed to selective intestinal malabsorption of cobalamin and low-molecular weight proteinuria. Although cubilin protein does not have a transmembrane segment, it functions as a multi-ligand receptor by binding to the transmembrane protein, amnionless. We established a system to quantitatively analyse membrane targeting of the protein complex in  ...[more]

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