The majority of snake venom phospholipases A(2) (svPLA(2)s) are toxic and induce a wide spectrum of biological effects. They are cysteine-rich proteins that contain 119-134 amino acids and share similar structures and functions. About 50% of the residues are incorporated into α-helices, whereas only 10% are in β-sheets. Fourteen conserved cysteines form a network of seven disulfide bridges that stabilize the tertiary structure. They show a high degree of sequence and structural similarity, and are believed to have a common calcium- dependent catalytic mechanism. Additionally, svPLA(2)s display an array of biological actions that are either dependent or independent of catalysis. The PLA(2)s of mammalian origin also exert potent bactericidal ...
Human phospholipase A2 (hPLA2) of the IIA group (HGIIA) catalyzes the hydrolysis of membrane phospho...
The activities of short synthetic, nonhemolytic peptides derived from the C-terminal region of myoto...
Antimicrobial peptides (AMPs) play a vital role in defense against resistant bacteria. In this study...
The majority of snake venom phospholipases A(2) (svPLA(2)s) are toxic and induce a wide spectrum of ...
The majority of snake venom phospholipases A2 (svPLA2s) are toxic and induce a wide spectrum of biol...
Snake venoms are complex mixtures of proteins among which both basic and acidic phospholipases A2 (...
Mammalian group-II phospholipases A2 (PLA2) of inflammatory fluids display bactericidal properties, ...
Phospholipases A2 (PLA2s) are abundant components of snake venoms, where they play toxic and digesti...
The activities of short synthetic, nonhemolytic peptides derived from the C-terminal region of myoto...
The membrane-active nature of phospholipase A2-derived peptides makes them potential candidates for ...
Phospholipases A(2) (PLA(2)s) are commonly found in snake venoms from Viperidae, Hydrophidae and Ela...
Phospholipases A(2) constitute the major components from Bothrops snake venoms and have been extensi...
A short peptide derived from the C-terminal region of Bothrops asper myotoxin II, a Lys49 phospholip...
A short peptide derived from the C-terminal region of Bothrops asper myotoxin II, a Lys49 phospholip...
The protein content of many snake venoms often includes one or more phospholipases A(2) (PLA(2)). In...
Human phospholipase A2 (hPLA2) of the IIA group (HGIIA) catalyzes the hydrolysis of membrane phospho...
The activities of short synthetic, nonhemolytic peptides derived from the C-terminal region of myoto...
Antimicrobial peptides (AMPs) play a vital role in defense against resistant bacteria. In this study...
The majority of snake venom phospholipases A(2) (svPLA(2)s) are toxic and induce a wide spectrum of ...
The majority of snake venom phospholipases A2 (svPLA2s) are toxic and induce a wide spectrum of biol...
Snake venoms are complex mixtures of proteins among which both basic and acidic phospholipases A2 (...
Mammalian group-II phospholipases A2 (PLA2) of inflammatory fluids display bactericidal properties, ...
Phospholipases A2 (PLA2s) are abundant components of snake venoms, where they play toxic and digesti...
The activities of short synthetic, nonhemolytic peptides derived from the C-terminal region of myoto...
The membrane-active nature of phospholipase A2-derived peptides makes them potential candidates for ...
Phospholipases A(2) (PLA(2)s) are commonly found in snake venoms from Viperidae, Hydrophidae and Ela...
Phospholipases A(2) constitute the major components from Bothrops snake venoms and have been extensi...
A short peptide derived from the C-terminal region of Bothrops asper myotoxin II, a Lys49 phospholip...
A short peptide derived from the C-terminal region of Bothrops asper myotoxin II, a Lys49 phospholip...
The protein content of many snake venoms often includes one or more phospholipases A(2) (PLA(2)). In...
Human phospholipase A2 (hPLA2) of the IIA group (HGIIA) catalyzes the hydrolysis of membrane phospho...
The activities of short synthetic, nonhemolytic peptides derived from the C-terminal region of myoto...
Antimicrobial peptides (AMPs) play a vital role in defense against resistant bacteria. In this study...