Matrix protein 1 (M1) of the influenza A virus plays multiple roles in virion assembly and infection. Interest in the pH dependence of M1\u27s multiple functions led us to study the effect of subtle pH changes on M1 structure, resulting in the elucidation of a unique low-pH crystal structure of the N1-165-domain of A/WSN/33 (H1N1) M1 that has never been reported. Although the 2.2 Å crystal structure of M1 N-terminus shows a dimer with the two monomers interacting in a face-to-face fashion at low pH as observed earlier, a 44° rotation of the second monomer has led to a significantly different dimer interface that possibly affects dimer stability. More importantly, while one of the monomers is fully defined, the N-terminal half of the second ...
Influenza A virus causes millions of severe cases of disease during annual epidemics. The most abund...
The extracellular domain of influenza A virus matrix protein 2 (M2, M2e) is conserved and is being e...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...
Matrix protein 1 (M1) of the influenza A virus plays multiple roles in virion assembly and infection...
AbstractThe amino-terminal domain of influenza A virus matrix protein (residues 1–164) was crystalli...
Background: The matrix 1 (M1) protein of Influenza A virus plays many critical roles throughout the ...
<div><h3>Background</h3><p>The matrix 1 (M1) protein of Influenza A virus plays many critical roles ...
<div><p>Influenza A virus matrix protein M1 is one of the most important and abundant proteins in th...
Influenza matrix protein 1 (M1) is the most abundant protein in the virus and forms the matrix layer...
Influenza A virus matrix protein 1 (M1) is the most abundant protein within virions and functions at...
Influenza A virus matrix protein M1 is one of the most important and abundant proteins in the virus ...
Influenza A virus matrix protein M1 plays an essential role in the virus lifecycle, but its function...
The matrix protein 1 (M1) is the most abundant structural protein in influenza A virus particles. It...
Matrix proteins are encoded by many enveloped viruses, including influenza viruses, herpes viruses a...
Matrix proteins are encoded by many enveloped viruses, including influenza viruses, herpes viruses, ...
Influenza A virus causes millions of severe cases of disease during annual epidemics. The most abund...
The extracellular domain of influenza A virus matrix protein 2 (M2, M2e) is conserved and is being e...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...
Matrix protein 1 (M1) of the influenza A virus plays multiple roles in virion assembly and infection...
AbstractThe amino-terminal domain of influenza A virus matrix protein (residues 1–164) was crystalli...
Background: The matrix 1 (M1) protein of Influenza A virus plays many critical roles throughout the ...
<div><h3>Background</h3><p>The matrix 1 (M1) protein of Influenza A virus plays many critical roles ...
<div><p>Influenza A virus matrix protein M1 is one of the most important and abundant proteins in th...
Influenza matrix protein 1 (M1) is the most abundant protein in the virus and forms the matrix layer...
Influenza A virus matrix protein 1 (M1) is the most abundant protein within virions and functions at...
Influenza A virus matrix protein M1 is one of the most important and abundant proteins in the virus ...
Influenza A virus matrix protein M1 plays an essential role in the virus lifecycle, but its function...
The matrix protein 1 (M1) is the most abundant structural protein in influenza A virus particles. It...
Matrix proteins are encoded by many enveloped viruses, including influenza viruses, herpes viruses a...
Matrix proteins are encoded by many enveloped viruses, including influenza viruses, herpes viruses, ...
Influenza A virus causes millions of severe cases of disease during annual epidemics. The most abund...
The extracellular domain of influenza A virus matrix protein 2 (M2, M2e) is conserved and is being e...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2017.Cataloged from ...