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Structural investigation of glycan recognition by the ERAD quality control lectin Yos9
Authors:Andreas Kniss  Sina Kazemi  Frank Löhr  Maren Berger  Vladimir V Rogov  Peter Güntert  Thomas Sommer  Ernst Jarosch  Volker Dötsch
Institution:1.Institute of Biophysical Chemistry and Center for Biomolecular Magnetic Resonance,Goethe University,Frankfurt am Main,Germany;2.Max-Delbrück Center for Molecular Medicine,Berlin-Buch,Germany;3.Laboratory of Physical Chemistry,ETH Zurich,Zurich,Switzerland;4.Graduate School of Science,Tokyo Metropolitan University,Hachioji,Japan;5.Institute for Biology,Humboldt Universit?t zu Berlin,Berlin,Germany
Abstract:Yos9 is an essential component of the endoplasmic reticulum associated protein degradation (ERAD) system that is responsible for removing terminally misfolded proteins from the ER lumen and mediating proteasomal degradation in the cytosol. Glycoproteins that fail to attain their native conformation in the ER expose a distinct oligosaccharide structure, a terminal α1,6-linked mannose residue, that is specifically recognized by the mannose 6-phoshate receptor homology (MRH) domain of Yos9. We have determined the structure of the MRH domain of Yos9 in its free form and complexed with 3α, 6α-mannopentaose. We show that binding is achieved by loops between β-strands performing an inward movement and that this movement also affects the entire β-barrel leading to a twist. These rearrangements may facilitate the processing of client proteins by downstream acting factors. In contrast, other oligosaccharides such as 2α-mannobiose bind weakly with only locally occurring chemical shift changes underscoring the specificity of this substrate selection process within ERAD.
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