The strategy of replication of influenza virus will be investigated. The mechanism of synthesis of the co-linear and interrupted mRNAs derived from viral genome RNA segments 7 and 8 will be emphasized. Our available evidence indicates that the interrupted mRNAs are produced by a splicing mechanism and we shall attempt to investigate this further using a variety of experimental systems. From these studies significant information should be gained on the biogenesis and control processes involved in the formation of the interrupted mRNAs of influenza virus. In addition, we hope to develop a simple model system for examining mRNA biosynthesis in eukaryotic cells. We will try to learn about the functions of the virus specific polypeptides NS1, NS2, and M2 using ts mutants and cell fractionation techniques and search for a peptide that may be translated from mRNA3 derived from influenza virus RNA segment 7. We will investigate whether protein synthesis is necessary for influenza virus mRNA splicing, determine the site of synthesis of the processed mRNAs and look for the conservation of methyl groups on the precursor mRNAs during the formation of processed mRNAs. We will determine the processing potential of the mRNAs using an SV40/influenza virus recombinant system and attempt to develop an in vitro splicing system. In addition, we will determine the structure and organization of RNA segments 7 and 8 of influenza B virus and their mRNAs and examine the expression of cloned DNA of the neuraminidase to investigate the role of a possible N-terminal membrane attachment region. Important comparative data will also be obtained in the course of these experiments such that we can look for regions of homology of difference between the nucleotide and protein sequences of the influenza A and B viruses.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI020201-03
Application #
3129709
Study Section
Virology Study Section (VR)
Project Start
1983-01-01
Project End
1986-12-31
Budget Start
1985-01-01
Budget End
1985-12-31
Support Year
3
Fiscal Year
1985
Total Cost
Indirect Cost
Name
Northwestern University at Chicago
Department
Type
Schools of Arts and Sciences
DUNS #
City
Evanston
State
IL
Country
United States
Zip Code
60208
Leser, George P; Lamb, Robert A (2017) Lateral Organization of Influenza Virus Proteins in the Budozone Region of the Plasma Membrane. J Virol 91:
Roberts, Kari L; Manicassamy, Balaji; Lamb, Robert A (2015) Influenza A virus uses intercellular connections to spread to neighboring cells. J Virol 89:1537-49
Wu, Yibing; Canturk, Belgin; Jo, Hyunil et al. (2014) Flipping in the pore: discovery of dual inhibitors that bind in different orientations to the wild-type versus the amantadine-resistant S31N mutant of the influenza A virus M2 proton channel. J Am Chem Soc 136:17987-95
Rey-Carrizo, Matias; Barniol-Xicota, Marta; Ma, Chunlong et al. (2014) Easily accessible polycyclic amines that inhibit the wild-type and amantadine-resistant mutants of the M2 channel of influenza A virus. J Med Chem 57:5738-47
Bruns, Annie M; Leser, George P; Lamb, Robert A et al. (2014) The innate immune sensor LGP2 activates antiviral signaling by regulating MDA5-RNA interaction and filament assembly. Mol Cell 55:771-81
Rey-Carrizo, Matias; Torres, Eva; Ma, Chunlong et al. (2013) 3-Azatetracyclo[5.2.1.1(5,8).0(1,5)]undecane derivatives: from wild-type inhibitors of the M2 ion channel of influenza A virus to derivatives with potent activity against the V27A mutant. J Med Chem 56:9265-74
Rossman, Jeremy S; Lamb, Robert A (2013) Viral membrane scission. Annu Rev Cell Dev Biol 29:551-69
Wang, Jizhou; Ma, Chunlong; Wang, Jun et al. (2013) Discovery of novel dual inhibitors of the wild-type and the most prevalent drug-resistant mutant, S31N, of the M2 proton channel from influenza A virus. J Med Chem 56:2804-12
Roberts, Kari L; Leser, George P; Ma, Chunlong et al. (2013) The amphipathic helix of influenza A virus M2 protein is required for filamentous bud formation and scission of filamentous and spherical particles. J Virol 87:9973-82
Balgi, Aruna D; Wang, Jun; Cheng, Daphne Y H et al. (2013) Inhibitors of the influenza A virus M2 proton channel discovered using a high-throughput yeast growth restoration assay. PLoS One 8:e55271

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