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Published on: November 12, 2015
N-terminal acetyltransferase 6 facilitates enterovirus 71 replication by regulating PI4KB expression and replication
Hang Yang1, Tingting Fan1, Meng Xun1
1Department of Pathogen Biology and Immunology, Xi'an Jiaotong University Health Science Center, Xi'an, China.
Insights
N-terminal acetyltransferase 6 (NAT6) is crucial for Enterovirus 71 (EV71) replication by maintaining Golgi integrity and supporting viral replication organelle formation. This discovery offers potential new targets for combating EV71 and similar enterovirus infections.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Enterovirus 71 (EV71) causes severe hand, foot, and mouth disease in children, with limited treatment options.
- Identifying host factors is key to developing antiviral strategies against EV71.
Purpose of the Study:
- To identify novel host factors essential for EV71 infection.
- To elucidate the mechanism by which these factors support viral replication.
Main Methods:
- Genome-wide CRISPR/Cas9 screening to identify host factors.
- Assays to assess viral replication, Golgi integrity, and protein interactions.
- Analysis of phosphatidylinositol 4-kinase IIIβ (PI4KB) and acyl-coenzyme A binding domain containing 3 (ACBD3) involvement.
Main Results:
- N-terminal acetyltransferase 6 (NAT6) was identified as an essential host factor for EV71 replication.
- NAT6 facilitates viral replication via its acetyltransferase activity, supporting Golgi integrity and replication organelle biogenesis.
- NAT6 stabilizes ACBD3, enhances PI4KB expression and PI4P production, crucial for enterovirus replication.
Conclusions:
- NAT6 is a novel host factor supporting EV71 infection by maintaining Golgi and replication organelle stability.
- NAT6's role in stabilizing ACBD3 and influencing PI4KB/PI4P pathways provides new insights into enterovirus replication mechanisms.
- NAT6 may be a potential pan-enterovirus target, as it's also required for Echovirus 7 and coxsackievirus B5.
Abstract:
Enterovirus 71 (EV71) is one of the major pathogens causing hand, foot, and mouth disease in children under 5 years old, which can result in severe neurological complications and even death. Due to limited treatments for EV71 infection, the identification of novel host factors and elucidation of mechanisms involved will help to counter this viral infection. N-terminal acetyltransferase 6 (NAT6) was identified as an essential host factor for EV71 infection with genome-wide CRISPR/Cas9 screening. NAT6 facilitates EV71 viral replication depending on its acetyltransferase activity but has little effect on viral release. In addition, NAT6 is also required for Echovirus 7 and coxsackievirus B5 infection, suggesting it might be a pan-enterovirus host factor. We further demonstrated that NAT6 is required for Golgi integrity and viral replication organelle (RO) biogenesis. NAT6 knockout significantly inhibited phosphatidylinositol 4-kinase IIIβ (PI4KB) expression and PI4P production, both of which are key host factors for enterovirus infection and RO biogenesis. Further mechanism studies confirmed that NAT6 formed a complex with its substrate actin and one of the PI4KB recruiters-acyl-coenzyme A binding domain containing 3 (ACBD3). Through modulating actin dynamics, NAT6 maintained the integrity of the Golgi and the stability of ACBD3, thereby enhancing EV71 infection. Collectively, these results uncovered a novel mechanism of N-acetyltransferase supporting EV71 infection.IMPORTANCEEnterovirus 71 (EV71) is an important pathogen for children under the age of five, and currently, no effective treatment is available. Elucidating the mechanism of novel host factors supporting viral infection will reveal potential antiviral targets and aid antiviral development. Here, we demonstrated that a novel N-acetyltransferase, NAT6, is an essential host factor for EV71 replication. NAT6 could promote viral replication organelle (RO) formation to enhance viral replication. The formation of enterovirus ROs requires numerous host factors, including acyl-coenzyme A binding domain containing 3 (ACBD3) and phosphatidylinositol 4-kinase IIIβ (PI4KB). NAT6 could stabilize the PI4KB recruiter, ACBD3, by inhibiting the autophagy degradation pathway. This study provides a fresh insight into the relationship between N-acetyltransferase and viral infection.
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