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Grants - AWARD SUMMARY


WILLIAM MARSH RICE UNIVERSITY


Influenza A virus causes annual epidemics and is potential threat for widespread pandemics. The genome of influenza A virus consists of eight segments of (-)RNA that are encapsidated in distinct double-helical structures called the ribonucleoprotein (RNP) complexes. The nucleoprotein (NP), the major protein component of RNPs, binds along genomic RNA at a 24nt interval. The viral polymerase, consisting of PA, PB1, and PB2, is bound to the two RNA termini of the RNP. NP is abundantly made in infected cells, and is essential for important viral processes such as viral genome trafficking, viral RNA replication, and virus assembly. Our laboratory has recently determined the crystal structure of influenza A virus NP, which shows an overall fold and an external RNA binding mode different from those of rhabdoviruses. Several key residues for RNA binding have been identified by mutagenesis. Polarization anisotropy assay shows that wild-type NP exhibits strong binding affinity for RNA, which in turn stimulates NP self-oligomerization. Without RNA, NP oligomers are not stable and slowly dissociate to monomers. Mutant NP monomer that cannot oligomerize shows weak RNA binding, suggesting that either RNA binds to NP-NP interface or NP monomer has a tertiary structure different from oligomeric NP. Purified NP can be phosphorylated at S402/S403 in vitro, and phosphorylation reduced NP RNA binding. Using purified recombinant NP and viral polymerase, we have shown that NP stimulates unprimed viral RNA synthesis by interacting directly with the polymerase. Our specific aims are to: 1. Elucidate the linked mechanisms of NP RNA-binding, oligomerization and assembly into RNPs. We will: (1) determine the structure of the NP monomer to elucidate the mechanism of NP monomer?oligomer transition; (2) determine the RNA binding mode of NP using site-directed mutagenesis and fluorescence anisotropy; (3) solve the structure of the NP:RNA complex by X-ray crystallography and cryo-EM reconstruction to obtain an accurate atomic model for the structure of the RNP; (4) elucidate the effects of phosphorylation of specific sites of NP on its various functions; and (5) solve the structure of NP from infectious salmon anemia virus (ISAV) and influenza B virus and determine whether NP self-oligomerization and RNA binding modes are broadly conserved in the Orthomyxoviridae family. 2. Elucidate the role of NP in viral RNA replication. To understand how NP interacts with the polymerase and affects RNA synthesis, we will: (1) identify the polymerase PA sequence(s) that regulate NP-directed unprimed viral RNA replication; (2) identify the sites on NP that functionally interact with the polymerase; and (3) use our in vitro system to elucidate several key issues concerning NP-dependent viral RNA replication. Our proposed research employs a broad spectrum of X-ray crystallography, electron microscopy and other biophysical techniques (by Dr. Tao, PI) together with functional and virological methods (by Dr. Krug, co-PI). Results from our studies will have important applications in antiviral drug development. PUBLIC HEALTH RELEVANCE: Influenza viruses cause highly contagious, acute respiratory illnesses and pose a serious threat to the human public health. The influenza virus nucleoprotein forms the protein scaffold of the helical genomic ribonucleoprotein complex, and plays critical roles in viral RNA replication. The aim of this grant is to elucidate the molecular mechanism and biological significance of several key activities of the influenza A virus nucleoprotein and to discover how such activities can be exploited for antiviral development.

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AWARD OVERVIEW

AWARD OVERVIEW
Award Number 1R01AI077785-01A2 Funding Agency Department of Health and Human Services
Total Award Amount $766,481 Project Location - City Houston
Award Date 09/21/2009 Project Location - State TX
Project Status Completed Project Location - Zip 77005-1892
Jobs Reported 0.00 Congressional District 07
Project Location - Country US

Recipient Information (Grants)

Recipient Information (Grants)
Recipient Name WILLIAM MARSH RICE UNIVERSITY
Recipient DUNS Number 050299031
Recipient Address 6100 MAIN ST
Recipient City HOUSTON
Recipient State Texas
Recipient Zip 77005-1827
Recipient Congressional District 07
Recipient Country USA
Required to Report Top 5
Highly Compensated Officials
No

Projects and Jobs Information

Projects and Jobs Information
Project Title THE INFLUENZA A VIRUS NUCLEOPROTEIN: STRUCTURE AND FUNCTION
Project Status Completed
Final Project Report Submitted Yes
Project Activities Description Research & Public Policy Analysis
Quarterly Activities/Project Description The ARRA part of the project is now complete. We have made major progress in studying how the influenza A virus NP interacts with the viral polymerase, RNA, and the matrix protein M1 to mediate the assembly of RNP and its nuclear export. We are continuing work on the influenza A virus NP which is supported now by regular NIAID funding.
Jobs Created 0.00
Description of Jobs Created There were no jobs created or retained in this quarter.


Purchaser Information (Grants)

Purchaser Information
Contracting Office ID Not Reported
Contracting Office Name Not Available
Contracting Office Region Not Available
TAS Major Program 75-0900

Award Information

Award Information
Award Date 09/21/2009
Award Number 1R01AI077785-01A2
Order Number
Award Type Grants
Funding Agency ID 75
Funding Agency Name Department of Health and Human Services
Funding Office Name Not Available
Awarding Agency ID 75
Awarding Agency Name Department of Health and Human Services
Amount of Award $766,481
Funds Invoiced/Received $766,422
Expenditure Amount $766,422
Infrastructure Expenditure Amount $0
Infrastructure Purpose and Rationale Not Reported
Infrastructure Point of Contact Name Not Reported
Infrastructure Point of Contact Email Not Reported
Infrastructure Point of Contact Phone Not Reported
Infrastructure Point of Contact Address Not Reported
Infrastructure Point of Contact City Not Reported
Infrastructure Point of Contact State Not Reported
Infrastructure Point of Contact Zip Not Reported

Product or Service Information (Grants)

Product or Service Information
Primary Activity Code **K
Activity Description Research & Public Policy Analysis

Sub-Awards Information

Sub-Awards Information
Sub-awards to Organizations 1
Sub-award Amounts to Organizations $242,480
Sub-Awards to Individuals 0
Sub-Award Amounts to Individuals $0
Number of Sub-awards less than $25,000/award 0
Amount of Sub-awards less than $25,000/award $0
Number of payments to vendors greater than $25,000 0
Total Amount of payments to vendors greater than $25,000/award $0
Number of payments to vendors less than $25,000/award 0
Total Amount of payments to vendors less than $25,000/award $0


Sub-Award Transactions

Sub-award R2Z931 - UNIVERSITY OF TEXAS AT AUSTIN

Sub-Award Amount $242,480
Sub-Award Date 10/30/2009
Sub-Awards Disbursed $242,452.11
Project Location - City Austin
Project Location - State TX
Project Location - Zip Code 78713-7726
Project Location - Congressional District 21
Sub-Recipient DUNS Number 170230239
Sub-Recipient Address 101 EAST 27TH STREET STE 4308
Sub-Recipient City AUSTIN
Sub-Recipient State Texas
Sub-Recipient Zip Code 78712-1500
Sub-Recipient Congressional District 21
Required To Report Top 5
Highly Compensated Officials
No





Project Location Detail

Location Information
Latitude, Longitude 29º 43' 5", -95º 25' 39"
Congressional District 07
Address 1 6100 Main Street
Address 2
City Houston
County Harris
State TX
Zip 77005-1892
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