Structural elucidation of thecis-prenyltransferase NgBR/DHDDS complex reveals insights in regulation of protein glycosylation

Author:

Edani Ban H.,Grabińska Kariona A.ORCID,Zhang RongORCID,Park Eon Joo,Siciliano Benjamin,Surmacz LilianaORCID,Ha Ya,Sessa William C.ORCID

Abstract

Cis-prenyltransferase (cis-PTase) catalyzes the rate-limiting step in the synthesis of glycosyl carrier lipids required for protein glycosylation in the lumen of endoplasmic reticulum. Here, we report the crystal structure of the human NgBR/DHDDS complex, which represents an atomic resolution structure for any heterodimericcis-PTase. The crystal structure sheds light on how NgBR stabilizes DHDDS through dimerization, participates in the enzyme’s active site through its C-terminal -RXG- motif, and how phospholipids markedly stimulatecis-PTase activity. Comparison of NgBR/DHDDS with homodimericcis-PTase structures leads to a model where the elongating isoprene chain extends beyond the enzyme’s active site tunnel, and an insert within the α3 helix helps to stabilize this energetically unfavorable state to enable long-chain synthesis to occur. These data provide unique insights into how heterodimericcis-PTases have evolved from their ancestral, homodimeric forms to fulfill their function in long-chain polyprenol synthesis.

Funder

HHS | NIH | National Heart, Lung, and Blood Institute

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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