Infections with Gram-negative bacteria form an increasing risk for human health due to antibiotic resistance. Our immune system contains various antimicrobial proteins that can degrade the bacterial cell envelope. However, many of these proteins do not function on Gram-negative bacteria, because the impermeable outer membrane of these bacteria prevents such components from reaching their targets. Here we show that complement-dependent formation of Membrane Attack Complex (MAC) pores permeabilizes this barrier, allowing antimicrobial proteins to cross the outer membrane and exert their antimicrobial function. Specifically, we demonstrate that MAC-dependent outer membrane damage enables human lysozyme to degrade the cell wall of E. coli. Usin...
BACKGROUND: Outer membrane vesicles (OMVs) are constitutively produced by Gram-negative bacteria thr...
Infections with bacteria form an increasing threat for human health. This is mainly due to the fact ...
The immune system kills bacteria by the formation of lytic membrane attack complexes (MACs), trigger...
Infections with Gram-negative bacteria form an increasing risk for human health due to antibiotic re...
Infections with Gram-negative bacteria form an increasing risk for human health due to antibiotic re...
Gram-negative bacteria are refractory to the action of many antibiotics due to their impermeable out...
An important effector function of the human complement system is to directly kill Gram-negative bact...
Bacteria that cause infections pose a great threat to global human health. Because some bacteria are...
The complement system is an important innate immune defense, containing about 30 secreted and membra...
Antimicrobial drug resistance causes public health problems worldwide. Scientific research for the d...
Complement proteins can form membrane attack complex (MAC) pores that directly kill Gram-negative ba...
Antimicrobial drug resistance causes public health problems worldwide and stimulates research for no...
The human body is continuously at battle with bacterial pathogens from its surrounding environment. ...
Lipopolysaccharides (LPS) are major antigenic components of the outer membrane of Gramnegative bacte...
The plasma proteins of the complement system fulfill important immune defense functions, including o...
BACKGROUND: Outer membrane vesicles (OMVs) are constitutively produced by Gram-negative bacteria thr...
Infections with bacteria form an increasing threat for human health. This is mainly due to the fact ...
The immune system kills bacteria by the formation of lytic membrane attack complexes (MACs), trigger...
Infections with Gram-negative bacteria form an increasing risk for human health due to antibiotic re...
Infections with Gram-negative bacteria form an increasing risk for human health due to antibiotic re...
Gram-negative bacteria are refractory to the action of many antibiotics due to their impermeable out...
An important effector function of the human complement system is to directly kill Gram-negative bact...
Bacteria that cause infections pose a great threat to global human health. Because some bacteria are...
The complement system is an important innate immune defense, containing about 30 secreted and membra...
Antimicrobial drug resistance causes public health problems worldwide. Scientific research for the d...
Complement proteins can form membrane attack complex (MAC) pores that directly kill Gram-negative ba...
Antimicrobial drug resistance causes public health problems worldwide and stimulates research for no...
The human body is continuously at battle with bacterial pathogens from its surrounding environment. ...
Lipopolysaccharides (LPS) are major antigenic components of the outer membrane of Gramnegative bacte...
The plasma proteins of the complement system fulfill important immune defense functions, including o...
BACKGROUND: Outer membrane vesicles (OMVs) are constitutively produced by Gram-negative bacteria thr...
Infections with bacteria form an increasing threat for human health. This is mainly due to the fact ...
The immune system kills bacteria by the formation of lytic membrane attack complexes (MACs), trigger...