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Updated: Nov 11, 2025

The CryoAPEX Method for Electron Microscopy Analysis of Membrane Protein Localization Within Ultrastructurally-Preserved Cells
Published on: February 27, 2020
Identification of cellular proteins interacting with PEDV M protein through APEX2 labeling
Shijuan Dong1, Ruiyang Wang2, Ruisong Yu2
1Institute of Animal Science and Veterinary Science, Shanghai Key Laboratory of Agricultural Genetics and Breeding, Shanghai Academy of Agricultural Sciences (SAAS), Shanghai, PR China; Shanghai Engineering Research Center of Breeding Pigs, Shanghai Academy of Agricultural Sciences (SAAS), Shanghai, PR China.
Abstract:
Membrane (M) proteins of coronaviruses are the most abundant component of the virus envelope and play crucial roles in virus assembly, virus budding and the regulation of host immunity. To understand more about these functions in the context of PEDV M protein, forty host cell proteins interacting with the M protein were identified in the present study by exploiting the proximity-labeling enzyme APEX2 (a mutant soybean ascorbate peroxidase). Bioinformatic analysis showed that the identified host cell proteins were related to fifty-four signal pathways and a wide diversity of biological processes. Interaction between M and five of the identified proteins (RIG-I, PPID, NHE-RF1, S100A11, CLDN4) was confirmed by co-immunoprecipitation (Co-IP). In addition, knockdown of PPID and S100A11 genes by siRNA significantly improved virus production, indicating that the proteins encoded by the two genes were interfering with or down-regulating virus replication in infected cells. Identification of the host cell proteins accomplished in this study provides new information about the mechanisms underlying PEDV replication and immune evasion. SIGNIFICANCE: PEDV M protein is an essential structural protein implicated in viral infection, replication and assembly although the precise mechanisms underlying these functions remain enigmatic. In this study, we have identified 40 host cell proteins that interact with PEDV M protein using the proximity-labeling enzyme APEX2. Co-immunoprecipitation subsequently confirmed interactions between PEDV M protein and five host cell proteins, two of which (S100A11 and PPID) were involved in down-regulating virus replication in infected cells. This study is significant in that it formulates a strategy to provide new information about the mechanisms relating to the novel functions of PEDV M protein.
Insights
Researchers identified 40 host cell proteins interacting with the Porcine Epidemic Diarrhea Virus (PEDV) M protein. Two proteins, PPID and S100A11, were found to down-regulate virus replication, offering insights into PEDV infection mechanisms.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Porcine Epidemic Diarrhea Virus (PEDV) Membrane (M) proteins are crucial for viral assembly, budding, and host immune regulation.
- The precise mechanisms of PEDV M protein function in viral replication and immune evasion are not fully understood.
Purpose of the Study:
- To identify host cell proteins interacting with the PEDV M protein.
- To elucidate the role of these interacting proteins in PEDV replication and immune evasion.
Main Methods:
- Utilized the proximity-labeling enzyme APEX2 to identify host cell proteins interacting with PEDV M protein.
- Performed bioinformatic analysis to determine associated signaling pathways and biological processes.
- Confirmed interactions using co-immunoprecipitation (Co-IP).
- Employed siRNA to knockdown specific host genes (PPID and S100A11) and assess their impact on virus production.
Main Results:
- Identified 40 host cell proteins interacting with the PEDV M protein.
- Bioinformatic analysis revealed associations with 54 signaling pathways and diverse biological processes.
- Confirmed interactions with RIG-I, PPID, NHE-RF1, S100A11, and CLDN4 via Co-IP.
- Knockdown of PPID and S100A11 significantly increased PEDV production, indicating their role in down-regulating viral replication.
Conclusions:
- The study identified novel host cell proteins interacting with the PEDV M protein.
- PPID and S100A11 negatively regulate PEDV replication, providing new insights into viral mechanisms.
- This research offers a strategy for understanding PEDV M protein functions in replication and immune evasion.

