R01AI161765
Project Grant
Overview
Grant Description
Identification and Characterization of Entry Factors Critical for Rift Valley Fever Virus Infection and Pathogenesis - Project Summary/Abstract
Rift Valley Fever Virus (RVFV) is a phlebovirus that belongs to the Phenuiviridae (formerly Bunyaviridae) family of negative-sense RNA viruses. As an emerging mosquito-borne virus, the significance of RVFV is highlighted by its designation as a NIAID Category A pathogen and its inclusion on the WHO's Blueprint of Priority Diseases. Recently, the Coalition for Epidemic Preparedness Innovations (CEPI) has also included RVFV as a part of their Emerging Infectious Diseases Vaccine Program, further emphasizing the potential impact of RVFV on global health and the economy.
While RVFV is endemic throughout sub-Saharan Africa, competent mosquito vector species are found in North America, highlighting the potential for the emergence of RVFV in non-endemic countries, including the United States. During outbreaks, RVFV causes severe disease in livestock, including sheep and cattle, which dramatically impact the socioeconomic framework in resource-limited settings. Humans are spill-over hosts, where infections can result in severe consequences, including hepatic necrosis, hemorrhagic fever, encephalitis, and retinal vasculitis.
Despite its significance to human health and the potential to negatively impact the socioeconomic fabric of resource-limited countries where the virus is endemic, there is a lack of safe and efficacious prophylactic and therapeutic treatment options. This gap is, in part, due to our lack of knowledge on host factors that contribute to RVFV infection. To address this need, we conducted a genomic screen that defined several critical factors, including a potential entry factor, which we will characterize using a multidisciplinary approach.
In support, we provide compelling preliminary data, including in vitro validation in host factor sufficient and deficient cells, transcomplementation studies, direct interaction between RVFV glycoprotein GN and the host proteins in vitro, inhibition of the entry factor by endogenous ligands in vitro in multiple cell lines from evolutionarily distinct hosts, and preliminary results of protection from RVFV infection in two conditional knockout mouse models. Importantly, we have generated many key reagents, including most cell lines and proteins, and knockout mice supporting the feasibility.
Importantly, this work will be performed by highly productive and collaborative investigators with expertise in every aspect of the proposed studies, including biochemistry, RVFV pathogenesis, immunology, proteomics, structural biology, and virology. Completion of the proposed studies will define novel host or entry factors for RVFV in target cells with tissue-specific relevance. As a specific receptor for RVFV has not previously been identified, these studies will provide important information for the design of therapeutic interventions to prevent RVFV infection and disease. At the completion, we expect to fill a key gap in the field and to provide novel targets for therapeutic development.
Rift Valley Fever Virus (RVFV) is a phlebovirus that belongs to the Phenuiviridae (formerly Bunyaviridae) family of negative-sense RNA viruses. As an emerging mosquito-borne virus, the significance of RVFV is highlighted by its designation as a NIAID Category A pathogen and its inclusion on the WHO's Blueprint of Priority Diseases. Recently, the Coalition for Epidemic Preparedness Innovations (CEPI) has also included RVFV as a part of their Emerging Infectious Diseases Vaccine Program, further emphasizing the potential impact of RVFV on global health and the economy.
While RVFV is endemic throughout sub-Saharan Africa, competent mosquito vector species are found in North America, highlighting the potential for the emergence of RVFV in non-endemic countries, including the United States. During outbreaks, RVFV causes severe disease in livestock, including sheep and cattle, which dramatically impact the socioeconomic framework in resource-limited settings. Humans are spill-over hosts, where infections can result in severe consequences, including hepatic necrosis, hemorrhagic fever, encephalitis, and retinal vasculitis.
Despite its significance to human health and the potential to negatively impact the socioeconomic fabric of resource-limited countries where the virus is endemic, there is a lack of safe and efficacious prophylactic and therapeutic treatment options. This gap is, in part, due to our lack of knowledge on host factors that contribute to RVFV infection. To address this need, we conducted a genomic screen that defined several critical factors, including a potential entry factor, which we will characterize using a multidisciplinary approach.
In support, we provide compelling preliminary data, including in vitro validation in host factor sufficient and deficient cells, transcomplementation studies, direct interaction between RVFV glycoprotein GN and the host proteins in vitro, inhibition of the entry factor by endogenous ligands in vitro in multiple cell lines from evolutionarily distinct hosts, and preliminary results of protection from RVFV infection in two conditional knockout mouse models. Importantly, we have generated many key reagents, including most cell lines and proteins, and knockout mice supporting the feasibility.
Importantly, this work will be performed by highly productive and collaborative investigators with expertise in every aspect of the proposed studies, including biochemistry, RVFV pathogenesis, immunology, proteomics, structural biology, and virology. Completion of the proposed studies will define novel host or entry factors for RVFV in target cells with tissue-specific relevance. As a specific receptor for RVFV has not previously been identified, these studies will provide important information for the design of therapeutic interventions to prevent RVFV infection and disease. At the completion, we expect to fill a key gap in the field and to provide novel targets for therapeutic development.
Awardee
Funding Goals
TO ASSIST PUBLIC AND PRIVATE NONPROFIT INSTITUTIONS AND INDIVIDUALS TO ESTABLISH, EXPAND AND IMPROVE BIOMEDICAL RESEARCH AND RESEARCH TRAINING IN INFECTIOUS DISEASES AND RELATED AREAS, TO CONDUCT DEVELOPMENTAL RESEARCH, TO PRODUCE AND TEST RESEARCH MATERIALS. TO ASSIST PUBLIC, PRIVATE AND COMMERCIAL INSTITUTIONS TO CONDUCT DEVELOPMENTAL RESEARCH, TO PRODUCE AND TEST RESEARCH MATERIALS, TO PROVIDE RESEARCH SERVICES AS REQUIRED BY THE AGENCY FOR PROGRAMS IN INFECTIOUS DISEASES, AND CONTROLLING DISEASE CAUSED BY INFECTIOUS OR PARASITIC AGENTS, ALLERGIC AND IMMUNOLOGIC DISEASES AND RELATED AREAS. PROJECTS RANGE FROM STUDIES OF MICROBIAL PHYSIOLOGY AND ANTIGENIC STRUCTURE TO COLLABORATIVE TRIALS OF EXPERIMENTAL DRUGS AND VACCINES, MECHANISMS OF RESISTANCE TO ANTIBIOTICS AS WELL AS RESEARCH DEALING WITH EPIDEMIOLOGICAL OBSERVATIONS IN HOSPITALIZED PATIENTS OR COMMUNITY POPULATIONS AND PROGRESS IN ALLERGIC AND IMMUNOLOGIC DISEASES. BECAUSE OF THIS DUAL FOCUS, THE PROGRAM ENCOMPASSES BOTH BASIC RESEARCH AND CLINICAL RESEARCH. SMALL BUSINESS INNOVATION RESEARCH (SBIR) PROGRAM EXPANDS AND IMPROVES PRIVATE SECTOR PARTICIPATION IN BIOMEDICAL RESEARCH. THE SBIR PROGRAM INTENDS TO INCREASE AND FACILITATE PRIVATE SECTOR COMMERCIALIZATION OF INNOVATIONS DERIVED FROM FEDERAL RESEARCH AND DEVELOPMENT, TO INCREASE SMALL BUSINESS PARTICIPATION IN FEDERAL RESEARCH AND DEVELOPMENT, AND TO FOSTER AND ENCOURAGE PARTICIPATION OF SOCIALLY AND ECONOMICALLY DISADVANTAGED SMALL BUSINESS CONCERNS AND WOMEN-OWNED SMALL BUSINESS CONCERNS IN TECHNOLOGICAL INNOVATION. THE SMALL BUSINESS TECHNOLOGY TRANSFER (STTR) PROGRAM STIMULATES AND FOSTERS SCIENTIFIC AND TECHNOLOGICAL INNOVATION THROUGH COOPERATIVE RESEARCH AND DEVELOPMENT CARRIED OUT BETWEEN SMALL BUSINESS CONCERNS AND RESEARCH INSTITUTIONS, TO FOSTER TECHNOLOGY TRANSFER BETWEEN SMALL BUSINESS CONCERNS AND RESEARCH INSTITUTIONS, TO INCREASE PRIVATE SECTOR COMMERCIALIZATION OF INNOVATIONS DERIVED FROM FEDERAL RESEARCH AND DEVELOPMENT, AND TO FOSTER AND ENCOURAGE PARTICIPATION OF SOCIALLY AND ECONOMICALLY DISADVANTAGED SMALL BUSINESS CONCERNS AND WOMEN-OWNED SMALL BUSINESS CONCERNS IN TECHNOLOGICAL INNOVATION. RESEARCH CAREER DEVELOPMENT AWARDS SUPPORT THE DEVELOPMENT OF SCIENTISTS DURING THE FORMATIVE STAGES OF THEIR CAREERS. INDIVIDUAL NATIONAL RESEARCH SERVICE AWARDS (NRSAS) ARE MADE DIRECTLY TO APPROVE APPLICANTS FOR RESEARCH TRAINING IN SPECIFIED BIOMEDICAL SHORTAGE AREAS. IN ADDITION, INSTITUTIONAL NATIONAL RESEARCH SERVICE AWARDS ARE MADE TO ENABLE INSTITUTIONS TO SELECT AND MAKE AWARDS TO INDIVIDUALS TO RECEIVE TRAINING UNDER THE AEGIS OF THEIR INSTITUTIONAL PROGRAM.
Grant Program (CFDA)
Awarding / Funding Agency
Place of Performance
Saint Louis,
Missouri
631101010
United States
Geographic Scope
Single Zip Code
Related Opportunity
Analysis Notes
Amendment Since initial award the End Date has been extended from 02/28/26 to 02/28/27 and the total obligations have increased 390% from $756,494 to $3,704,381.
Washington University was awarded
Rift Valley Fever Virus Entry Factors: Novel Targets Therapeutic Development
Project Grant R01AI161765
worth $3,704,381
from the National Institute of Allergy and Infectious Diseases in March 2021 with work to be completed primarily in Saint Louis Missouri United States.
The grant
has a duration of 6 years and
was awarded through assistance program 93.855 Allergy and Infectious Diseases Research.
The Project Grant was awarded through grant opportunity NIH Research Project Grant (Parent R01 Clinical Trial Not Allowed).
Status
(Ongoing)
Last Modified 1/28/26
Period of Performance
3/19/21
Start Date
2/28/27
End Date
Funding Split
$3.7M
Federal Obligation
$0.0
Non-Federal Obligation
$3.7M
Total Obligated
Activity Timeline
Subgrant Awards
Disclosed subgrants for R01AI161765
Transaction History
Modifications to R01AI161765
Additional Detail
Award ID FAIN
R01AI161765
SAI Number
R01AI161765-2400626990
Award ID URI
SAI UNAVAILABLE
Awardee Classifications
Private Institution Of Higher Education
Awarding Office
75NM00 NIH National Institute of Allergy and Infectious Diseases
Funding Office
75NM00 NIH National Institute of Allergy and Infectious Diseases
Awardee UEI
L6NFUM28LQM5
Awardee CAGE
2B003
Performance District
MO-01
Senators
Joshua Hawley
Eric Schmitt
Eric Schmitt
Budget Funding
| Federal Account | Budget Subfunction | Object Class | Total | Percentage |
|---|---|---|---|---|
| National Institute of Allergy and Infectious Diseases, National Institutes of Health, Health and Human Services (075-0885) | Health research and training | Grants, subsidies, and contributions (41.0) | $1,481,512 | 100% |
Modified: 1/28/26