4.4 Review

N-Glycan-based ER Molecular Chaperone and Protein Quality Control System: The Calnexin Binding Cycle

Journal

TRAFFIC
Volume 17, Issue 4, Pages 308-326

Publisher

WILEY
DOI: 10.1111/tra.12358

Keywords

endoplasmic reticulum; molecular chaperones; N-glycans; protein folding; quality control

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Funding

  1. National Institutes of Health [GM086874]
  2. Chemistry-Biology Interface Predoctoral training grant [T32 GM008515]

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Helenius and colleagues proposed over 20-years ago a paradigm-shifting model for how chaperone binding in the endoplasmic reticulum was mediated and controlled for a new type of molecular chaperone- the carbohydrate-binding chaperones, calnexin and calreticulin. While the originally established basics for this lectin chaperone binding cycle holds true today, there has been a number of important advances that have expanded our understanding of its mechanisms of action, role in protein homeostasis, and its connection to disease states that are highlighted in this review.

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