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Updated: Feb 20, 2026

Purification and Visualization of Influenza A Viral Ribonucleoprotein Complexes
Published on: February 9, 2009
KIF13A mediates trafficking of influenza A virus ribonucleoproteins
Ana Ramos-Nascimento1,2, Bárbara Kellen3, Filipe Ferreira1
1Cell Biology of Viral Infection Lab, Instituto Gulbenkian de Ciência (IGC), 2780-156 Oeiras, Portugal.
Abstract:
Influenza A is a rapidly evolving virus that is successful in provoking periodic epidemics and occasional pandemics in humans. Viral assembly is complex as the virus incorporates an eight-partite genome of RNA (in the form of viral ribonucleoproteins, vRNPs), and viral genome assembly - with its implications to public health - is not completely understood. It has previously been reported that vRNPs are transported to the cell surface on Rab11-containing vesicles by using microtubules but, so far, no molecular motor has been assigned to the process. Here, we have identified KIF13A, a member of the kinesin-3 family, as the first molecular motor to efficiently transport vRNP-Rab11 vesicles during infection with influenza A. Depletion of KIF13A resulted in reduced viral titers and less accumulation of vRNPs at the cell surface, without interfering with the levels of other viral proteins at sites of viral assembly. In addition, when overexpressed and following two separate approaches to displace vRNP-Rab11 vesicles, KIF13A increased levels of vRNP at the plasma membrane. Together, our results show that KIF13A plays an important role in the transport of influenza A vRNPs, a crucial step for viral assembly.This article has an associated First Person interview with the first author of the paper.
Insights
Scientists identified KIF13A as a molecular motor crucial for influenza A virus assembly. This motor protein transports viral ribonucleoproteins (vRNPs) to the cell surface, impacting viral replication and public health.
Area of Science:
- Virology
- Cell Biology
- Molecular Motors
Background:
- Influenza A virus causes epidemics and pandemics.
- Viral assembly, particularly genome transport, is not fully understood.
- vRNPs are known to travel via Rab11 vesicles on microtubules.
Purpose of the Study:
- To identify the molecular motor responsible for vRNP-Rab11 vesicle transport.
- To elucidate the role of this motor in influenza A virus assembly and replication.
Main Methods:
- KIF13A was identified as a potential motor protein.
- KIF13A depletion was performed using genetic techniques.
- Viral titers and vRNP localization were assessed.
- KIF13A overexpression was used to study its effect on vRNP transport.
Main Results:
- KIF13A was identified as the first molecular motor for vRNP-Rab11 vesicle transport.
- KIF13A depletion reduced viral titers and vRNP cell surface accumulation.
- KIF13A overexpression enhanced vRNP levels at the plasma membrane.
Conclusions:
- KIF13A is essential for efficient transport of influenza A vRNPs.
- This motor protein plays a critical role in the viral assembly process.
- Targeting KIF13A could offer new strategies for controlling influenza A virus.
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