<div><p>SMYD proteins are an exciting field of study as they are linked to many types of cancer-related pathways. Cardiac and skeletal muscle development and function also depend on SMYD proteins opening a possible avenue for cardiac-related treatment. Previous crystal structure studies have revealed that this special class of protein lysine methyltransferases have a bilobal structure, and an open–closed motion may regulate substrate specificity. Here we use the molecular dynamics simulation to investigate the still-poorly-understood SMYD2 dynamics. Cross-correlation analysis reveals that SMYD2 exhibits a negative correlated inter-lobe motion. Principle component analysis suggests that this correlated dynamic is contributed to by a twisting...
SMYD5 belongs to a special class of protein lysine methyltransferases with an MYND (Myeloid-Nervy-DE...
Hen lysozyme is an enzyme characterized by the presence of two domains whose relative motions are in...
Models derived from X-ray crystallography can give the impression that proteins are rigid structures...
SMYD proteins are an exciting field of study as they are linked to many types of cancer- related pat...
BACKGROUND: The human lysine methyltransferase Smyd3, a member of the SET and MYND domain containin...
Smyd2 lysine methyltransferase regulates monomethylation of histone and nonhistone lysine residues u...
SET and MYND domain-containing proteins (SMYD) are a special family of histone lysine methyltransfer...
<div><p>Molecular dynamics (MD) simulations of proteins provide important information to understand ...
Molecular dynamics simulation allows for the simulation of proteins with precise control over what l...
A deep understanding of the role of motions in the functional mechanisms of biomolecules can potenti...
SummaryCharacterization of lysine methylation has proven challenging despite its importance in biolo...
Signal transduction pathways are essential mechanisms that cells use to perform a myriad of biologic...
SMYD3 plays a key role in cancer cell viability, adhesion, migration and invasion. SMYD3 promotes fo...
Our understanding of protein lysine methyltransferases and their substrates remains limited despite ...
Protein dynamics is intimately related to biological function. Core dynamics is usually studied with...
SMYD5 belongs to a special class of protein lysine methyltransferases with an MYND (Myeloid-Nervy-DE...
Hen lysozyme is an enzyme characterized by the presence of two domains whose relative motions are in...
Models derived from X-ray crystallography can give the impression that proteins are rigid structures...
SMYD proteins are an exciting field of study as they are linked to many types of cancer- related pat...
BACKGROUND: The human lysine methyltransferase Smyd3, a member of the SET and MYND domain containin...
Smyd2 lysine methyltransferase regulates monomethylation of histone and nonhistone lysine residues u...
SET and MYND domain-containing proteins (SMYD) are a special family of histone lysine methyltransfer...
<div><p>Molecular dynamics (MD) simulations of proteins provide important information to understand ...
Molecular dynamics simulation allows for the simulation of proteins with precise control over what l...
A deep understanding of the role of motions in the functional mechanisms of biomolecules can potenti...
SummaryCharacterization of lysine methylation has proven challenging despite its importance in biolo...
Signal transduction pathways are essential mechanisms that cells use to perform a myriad of biologic...
SMYD3 plays a key role in cancer cell viability, adhesion, migration and invasion. SMYD3 promotes fo...
Our understanding of protein lysine methyltransferases and their substrates remains limited despite ...
Protein dynamics is intimately related to biological function. Core dynamics is usually studied with...
SMYD5 belongs to a special class of protein lysine methyltransferases with an MYND (Myeloid-Nervy-DE...
Hen lysozyme is an enzyme characterized by the presence of two domains whose relative motions are in...
Models derived from X-ray crystallography can give the impression that proteins are rigid structures...