Related Experiment Video
Updated: Sep 2, 2026

Membrane Remodeling of Giant Vesicles in Response to Localized Calcium Ion Gradients
Published on: July 16, 2018
GPNMB promotes double-membrane vesicle accumulation and facilitates structural protein transport during PEDV
Qin Li1, Qiang Wei2, Aiping Wang3
1College of Veterinary Medicine, Jilin University, Changchun, Jilin, China.
Abstract:
Porcine epidemic diarrhea virus (PEDV) causes substantial economic losses in the swine industry globally. Host factors regulating the intracellular replication of PEDV, particularly early RNA synthesis and structural protein production, are not well understood, limiting antiviral strategies. We report that glycoprotein non‑metastatic melanoma protein B (GPNMB) is a key host factor promoting PEDV infection. Initially identified as a PEDV S1-binding partner, GPNMB was confirmed to enhance infection via loss-and gain-of-function experiments in Vero and IPEC-J2 cells. Genetic knockout of GPNMB inhibited PEDV replication without affecting viral attachment or internalization. We show that GPNMB is necessary for the accumulation of double-membrane vesicles (DMVs) and promotes early viral RNA synthesis. Notably, GPNMB directly interacts with the PEDV spike (S) and nucleocapsid (N) proteins, increases their abundance, and facilitates their transport from the endoplasmic reticulum (ER) to the Golgi apparatus, implicating it in structural protein maturation. Our work reveals a pivotal role for GPNMB in PEDV replication and nominates it as a target for host-directed antiviral intervention.
Related Concept Videos
Coat Assembly and GTPases
Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...
Vesicular Tubular Clusters
With the help of motor proteins such...
Intralumenal Vesicles and Multivesicular Bodies
Clathrin Coated Vesicles
Pinching-off of Coated Vesicles
Rab Proteins
Rab proteins switch between a cytosolic, GDP-bound inactive state and a membrane-anchored, GTP-bound active state. By themselves, Rabs show slow rates of GDP/GTP exchange and GTP hydrolysis. Thus, Rab proteins are considered...

