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Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang
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Page 1: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Molecular Dynamics of the Avian Influenza Virus

Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth

Team Leader: Yuan Zhang

Page 2: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Contents

• Influenza Background• How Influenza Works• Molecular Dynamics• Objective• Procedure• Results• Conclusion

Page 3: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Influenza Background

Page 4: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

The Influenza Problem

• “Flu”• Common viral infection of lungs• Many different strains which mutate regularly• Different levels of virulence• Kills roughly half a million people per year

Page 5: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Historical Flu Pandemics

• 1918 Spanish Flu (H1N1)– 500,000 deaths in U.S.

• 1957 Asian Flu (H2N2)– 69,800 deaths in U.S.

• 1968 Hong Kong Flu (H3N2)– 33,800 deaths in U.S.

Page 6: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Avian Influenza

• H5N1• Form of Influenza A Virus• One of the most virulent strains today, spreads

only from birds to humans• Similar to human “common flu”• Mutates frequently, makes it hard to develop

countermeasures• If a mutation allows for it to spread from human

to human, pandemic would follow

Page 7: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

How Influenza Works

Page 8: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Structure of Bird Flu Virus

• Protein Coat– Hemagglutinin – bonds

virus to cell membrane– Neuraminidase – helps

virus reproduce in cell

• Lipid Membrane• RNA

Page 9: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Lifecycle of Bird Flu Virus

• Enters and infects cell

• Reproduce genetic material

• Cell lyses, releasing new viruses

Page 10: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Fusion Peptide

• Part of Hemagglutinin protein• Binds virus to cell membrane

Page 11: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Molecular Dynamics

Page 12: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Molecular Dynamics (MD)

• Involves study of computer simulations that allow molecules and atoms to interact

• Extremely complex, based on physics laws• Must be run on powerful supercomputers

Page 13: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

MD Software

• Many different types of software solutions exist

• We utilized VMD and NAMD– VMD – Visual Molecular Dynamics– NAMD2 – Not (just) Another Molecular Dynamics

program

Page 14: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

A silicon nanopore, rendered with VMD by the Theoretical and Computational Biophysics Group at

the University of Illinois at Urbana-Champaign

Page 15: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Objective

Page 16: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Objective1. Utilize VMD and NAMD2 to conduct

simulations of the influenza fusion peptide being inserted into a lipid membrane on OSC’s supercomputer clusters

2. Determine how various mutations of the fusion peptide affects its ability to penetrate a lipid membrane

Page 17: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Procedure

Page 18: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Procedure

1. Acquire protein structure files (.pdb) – pdb.org

2. Generate lipid membrane, position protein on membrane

3. Solvate (immerse in water) the protein4. Create batch files that tell supercomputer

what to do

Page 19: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Procedure (Cont.)

5. Perform an equilibration simulation to equilibrate protein

6. Execute simulation that pulls protein into membrane

7. Produce visualization

Page 20: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.
Page 21: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Results

Page 22: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Fusion Peptide Equilibration (H1N1)

Page 23: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Fusion Peptide Pulling (H1N1)

Page 24: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Fusion Peptide Pulling #2 (H1N1)

Page 25: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Next Step: Mutations

• Random change in genetic material• Changes amino acid structure in proteins• New strains of influenza arise through random

mutations as well as through natural selection

Page 26: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Comparison of Amino Sequences

• Different Strains of the 20 amino acid fusion peptide

• Mutation Names – based on original amino acid, position, and new amino acid

Page 27: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Mutation 1

• Mutation at the “head” of the protein• Variants G1V, G1S– (Changes to Valine, Serine)

• Changes way each peptide enters the membrane (Li, Han, Lai, Bushweller, Cafisso, Tamm)

Page 28: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

G1V(green), G1S (red) mutants, H1N1 (orange)

Page 29: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

G1V(green), G1S (red) mutants, H1N1 (orange)

Page 30: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Analysis

• The H1N1 maintains a straight structure• G1V, G1S variants bunch up – reduce

efficiency• Shows that the Glycine is important amino

acid on the “head”

Page 31: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Mutation 2

• Mutation near bend in peptide• W14A / H3N2• Boomerang structure is critical to peptide (Lai,

Park, White, Tamm)

Page 32: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

W14A(green), H1N1 (blue)

Page 33: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

W14A(green), H1N1 (blue)

Page 34: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Analysis

• W14A bunches up, after going in half way, comes back out

• H1N1 maintains structure• Shows that “boomerang” or bend is essential• Also could have contributed the success of the

1918 H1N1 outbreak, compared to H3N2

Page 35: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Mutation 3

• N12G• Affects Boomerang Structure• Chosen by team members (not previously

attempted)

Page 36: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

N12G(orange), H1N1 (blue)

Page 37: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

N12G(orange), H1N1 (blue)

Page 38: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Analysis

• N12G bunches up halfway through• Does not insert as much as H1N1• Further proves that proper bend is essential

Page 39: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Conclusion

Page 40: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Conclusions

• Boomerang structure of the fusion peptide is essential for proper insertion

• Glycine is essential in the “head” position of the fusion peptide

Page 41: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

The Bigger Picture

• The fusion peptide process is a target for drug intervention

• Influenza mutates quickly• Deadly implications if H5N1 mutates to spread

from human to human• Further research is essential to protect

humans from another pandemic

Page 42: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Acknowledgements

Yuan Zhang(project leader)

Barbara Woodall(UNIX)

Elaine Pritchard(Organization)

Brianna, Daniel(Dorm Supervisors)

SI SponsorsParents

VMD(University of Illinois)

NAMD2(University of Illinois)

ClustalW(Amino Acid Alignment)

OSC(Supercomputing Time)

Page 43: Molecular Dynamics of the Avian Influenza Virus Team Members: Ashvin Srivatsa, Michael Fu, Ellen Chuang, Ravi Sheth Team Leader: Yuan Zhang.

Questions?


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