Molecular Stressors Engender Protein Connectivity Dysfunction through Aberrant N-Glycosylation of a Chaperone

分子应激因子通过分子伴侣的异常N-糖基化导致蛋白质连接功能障碍

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作者:Pengrong Yan ,Hardik J Patel ,Sahil Sharma ,Adriana Corben ,Tai Wang ,Palak Panchal ,Chenghua Yang ,Weilin Sun ,Thais L Araujo ,Anna Rodina ,Suhasini Joshi ,Kenneth Robzyk ,Srinivasa Gandu ,Julie R White ,Elisa de Stanchina ,Shanu Modi ,Yelena Y Janjigian ,Elizabeth G Hill ,Bei Liu ,Hediye Erdjument-Bromage ,Thomas A Neubert ,Nanette L S Que ,Zihai Li ,Daniel T Gewirth ,Tony Taldone ,Gabriela Chiosis

Abstract

Stresses associated with disease may pathologically remodel the proteome by both increasing interaction strength and altering interaction partners, resulting in proteome-wide connectivity dysfunctions. Chaperones play an important role in these alterations, but how these changes are executed remains largely unknown. Our study unveils a specific N-glycosylation pattern used by a chaperone, Glucose-regulated protein 94 (GRP94), to alter its conformational fitness and stabilize a state most permissive for stable interactions with proteins at the plasma membrane. This "protein assembly mutation' remodels protein networks and properties of the cell. We show in cells, human specimens, and mouse xenografts that proteome connectivity is restorable by inhibition of the N-glycosylated GRP94 variant. In summary, we provide biochemical evidence for stressor-induced chaperone-mediated protein mis-assemblies and demonstrate how these alterations are actionable in disease.

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