Pore-forming toxins are protein assemblies used by many organisms to disrupt the membranes of target cells. They are expressed as soluble monomers that assemble spontaneously into multimeric pores. However, owing to their complexity, the assembly processes have not been resolved in detail for any pore-forming toxin. To determine the assembly mechanism for the ring-shaped, homododecameric pore of the bacterial cytolytic toxin ClyA, we collected a diverse set of kinetic data using single-molecule spectroscopy and complementary techniques on timescales from milliseconds to hours, and from picomolar to micromolar ClyA concentrations. The entire range of experimental results can be explained quantitatively by a surprisingly simple mechanism. Fir...
Pore-forming toxins (PFTs) bind to cell membranes and form nanoscale pores that allow leakage of cel...
Pore-forming toxins (PFTs) bind to cell membranes and form nanoscale pores that allow leakage of cel...
The 303-residue cytolytic toxin ClyA forms a stable α-helical monomer. In the presence of detergents...
Pore-forming toxins are protein assemblies used by many organisms to disrupt the membranes of target...
Pore-forming toxins are protein assemblies used by many organisms to disrupt the mem-branes of targe...
Pore-forming toxins are protein assemblies used by many organisms to disrupt the mem-branes of targe...
The α-pore-forming toxin Cytolysin A (ClyA) is responsible for the hemolytic phenotype of several Es...
Pore-forming toxins are known for their ability to efficiently form transmembrane pores which eventu...
Pore-forming toxins are known for their ability to efficiently form transmembrane pores which eventu...
The α-pore-forming toxin Cytolysin A (ClyA) is responsible for the hemolytic activity of various Esc...
The pore-forming toxin cytolysin A (ClyA) is expressed as a large α-helical monomer that, upon inter...
The pore-forming toxin cytolysin A (ClyA) is expressed as a large α-helical monomer that, upon inter...
Pore-forming toxins are ubiquitous cytotoxins that are exploited by both bacteria and the immune res...
The 303-residue cytolytic toxin ClyA forms a stable α-helical monomer. In the presence of detergents...
The 303-residue cytolytic toxin ClyA forms a stable α-helical monomer. In the presence of detergents...
Pore-forming toxins (PFTs) bind to cell membranes and form nanoscale pores that allow leakage of cel...
Pore-forming toxins (PFTs) bind to cell membranes and form nanoscale pores that allow leakage of cel...
The 303-residue cytolytic toxin ClyA forms a stable α-helical monomer. In the presence of detergents...
Pore-forming toxins are protein assemblies used by many organisms to disrupt the membranes of target...
Pore-forming toxins are protein assemblies used by many organisms to disrupt the mem-branes of targe...
Pore-forming toxins are protein assemblies used by many organisms to disrupt the mem-branes of targe...
The α-pore-forming toxin Cytolysin A (ClyA) is responsible for the hemolytic phenotype of several Es...
Pore-forming toxins are known for their ability to efficiently form transmembrane pores which eventu...
Pore-forming toxins are known for their ability to efficiently form transmembrane pores which eventu...
The α-pore-forming toxin Cytolysin A (ClyA) is responsible for the hemolytic activity of various Esc...
The pore-forming toxin cytolysin A (ClyA) is expressed as a large α-helical monomer that, upon inter...
The pore-forming toxin cytolysin A (ClyA) is expressed as a large α-helical monomer that, upon inter...
Pore-forming toxins are ubiquitous cytotoxins that are exploited by both bacteria and the immune res...
The 303-residue cytolytic toxin ClyA forms a stable α-helical monomer. In the presence of detergents...
The 303-residue cytolytic toxin ClyA forms a stable α-helical monomer. In the presence of detergents...
Pore-forming toxins (PFTs) bind to cell membranes and form nanoscale pores that allow leakage of cel...
Pore-forming toxins (PFTs) bind to cell membranes and form nanoscale pores that allow leakage of cel...
The 303-residue cytolytic toxin ClyA forms a stable α-helical monomer. In the presence of detergents...