Structural basis of regulated N-glycosylation at the secretory translocon

M Melvin Yamsek M Mengxiao Ma R Roshan Jha Y Yu Wan Q Qianru Li F Frank Zhong K Katherine DeLong Z Zhe Ji R Rajat Rohatgi R Robert J. Keenan

Abstract

Abstract Most human secretory pathway proteins are N-glycosylated by oligosaccharyltransferase (OST) complexes as they enter the endoplasmic reticulum (ER) 1–3 . Recent work revealed a substrate-assisted mechanism by which N-glycosylation of the chaperone glucose-regulated protein 94 (GRP94) is regulated to control cell surface receptor signalling 4 . Here we report the structure of a natively isolated GRP94 folding intermediate tethered to a specialized CCDC134-bound translocon. Together with functional analysis, the data reveal how a conserved N-terminal extension in GRP94 inhibits OST-A and how structural rearrangements within the translocon shield the tethered nascent chain from inappropriate OST-B glycosylation. These interactions depend on a hydrophobic CCDC134 groove, which recognizes a non-native conformation of nascent GRP94. Our results define a mechanism of regulated N-glycosylation and illustrate how the nascent chain remodels the translocon to facilitate its own biogenesis.

Article Details

Journal Nature
Volume / Issue Vol. 649, Issue 8097
Published January 15, 2026
Pages 777-784
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (10)

M

Melvin Yamsek

M

Mengxiao Ma

R

Roshan Jha

Y

Yu Wan

Q

Qianru Li

F

Frank Zhong

K

Katherine DeLong

Z

Zhe Ji

R

Rajat Rohatgi

R

Robert J. Keenan