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Dengue virus NS4A protein dynamics drive membrane deformation

NIAID - National Institute of Allergy and Infectious Diseases

open
OpenLast verified: 2026-07-26

About This Grant

PROJECT ABSTRACT/SUMMARY Mosquito-borne flaviviruses impose a significant global health burden by causing diseases such as hemorrhagic fever, encephalitis, and congenital birth defects. Dengue virus (DENV) poses the largest risk among these viruses, with nearly 400 million infections estimated to occur annually. Secondary DENV infections are especially severe and are increasing in frequency as the endemic range expands due to climate change. Despite this impact, no antiviral drugs are currently approved for the treatment or prevention of DENV infection. A critical barrier to therapeutic development is our limited understanding of the molecular mechanisms governing DENV replication. RNA viruses, including DENV, create specialized replication factories to concentrate enzymes and substrates required for genome replication. The formation of these compartments involves the physical bending of the endoplasmic reticulum (ER) membrane to generate invaginations that hide viral replication intermediates. DENV non-structural protein 4A (NS4A) provides a major driving force for these membrane rearrangements. However, the precise mechanism by which NS4A generates the force to bend the ER membrane remains unclear despite its potentials as a therapeutic target. Our long-term goal is to elucidate the molecular mechanisms by which NS4A promotes the formation of virus replication compartments. The long-standing model in the field is that the oligomerization of ER-resident NS4A accelerates the dynamics of NS4A, which facilitates membrane bending and catalyzes the formation of replication factories. Testing this model computationally or experimentally has been limited by 1) computational cost associated with large systems and long simulation times, and 2) limitations in producing small hydrophobic membrane proteins in large quantities for biophysical assays. To overcome these challenges, we will employ novel molecular dynamics (MD) simulation techniques and coarse- grained (CG) models to study this system over timescales required to observe membrane bending. Simulation predictions will be tested experimentally using cell-free synthesis of NS4A and in vitro membrane bending assays. In Aim 1, we will establish the impacts of NS4A on ER membrane dynamics using a combined simulation and experimental approach. Aim 1a focuses on dissecting the effects of a single NS4A monomer on ER membrane dynamics. We will simulate a lipid bilayer that reflects the composition and temperature of the ER in human and mosquito membranes. NS4A monomers will be oriented in the membrane based on previous biochemical assays. Aim 1b extends these investigations to include NS4A dimers and trimers. These simulations will pinpoint specific NS4A domains and amino acids that have the greatest impact on membrane bending and their interactions with lipids. Aim 1c will focus on experimentally validating the computational predictions derived from these studies using nanodisc technology and giant unilamellar vesicles (GUVs). Ultimately, our work will catalyze therapeutic development by identifying small molecules capable of disrupting NS4A-mediated membrane dynamics and engineering proteins to bend membranes on demand.

Grant Summary

Dengue virus NS4A protein dynamics drive membrane deformation is a NIAID - National Institute of Allergy and Infectious Diseases grant providing up to $81K for university, nonprofit, healthcare org. Applications are due 2028-06-30 (open). Check eligibility and apply with FindGrants.

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Focus Areas

health research

Eligibility

universitynonprofithealthcare org

How to Apply

Funding Range

Up to $81K

Deadline

2028-06-30

Complexity
Medium
  1. 1Confirm your organization is eligible for Dengue virus NS4A protein dynamics drive membrane deformation from NIAID - National Institute of Allergy and Infectious Diseases, checking organization type, location, and any population or project requirements.
  2. 2Gather the required documents and information, including your organization details, project plan, and budget figures.
  3. 3Draft your application narrative and budget addressing the funder's priorities and review criteria. FindGrants can draft each section for you to review and edit.
  4. 4Review every section against the requirements checklist, then export a submission-ready application pack and submit it to NIAID - National Institute of Allergy and Infectious Diseases before the deadline.
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Dengue virus NS4A protein dynamics drive membrane deformation: Frequently Asked Questions

Who is eligible for the Dengue virus NS4A protein dynamics drive membrane deformation?

Dengue virus NS4A protein dynamics drive membrane deformation is offered by NIAID - National Institute of Allergy and Infectious Diseases and is generally open to university, nonprofit, healthcare org. It is open to organizations nationwide unless the funder specifies otherwise. Review the specific eligibility terms before applying, since funders set their own requirements around organization type, location, and the population or project being served.

How much funding does the Dengue virus NS4A protein dynamics drive membrane deformation provide?

Dengue virus NS4A protein dynamics drive membrane deformation provides up to $81K per award from NIAID - National Institute of Allergy and Infectious Diseases. Actual award sizes depend on the scope of your project, available program funds, and the number of applicants, so build a budget that reflects realistic, allowable costs rather than the maximum figure.

When is the Dengue virus NS4A protein dynamics drive membrane deformation deadline?

Applications for Dengue virus NS4A protein dynamics drive membrane deformation are due 2028-06-30 (open). Because deadlines can change, verify the date with the funder, NIAID - National Institute of Allergy and Infectious Diseases, and give yourself enough time to prepare a complete, competitive application before the close date.

How do you apply for the Dengue virus NS4A protein dynamics drive membrane deformation?

To apply for Dengue virus NS4A protein dynamics drive membrane deformation, confirm your eligibility, gather the required documents, and prepare a narrative and budget that address the funder's priorities. FindGrants guides you step by step and can draft each section, then exports a submission-ready application pack for this grant from NIAID - National Institute of Allergy and Infectious Diseases.