To generate a cytopathic effect, the catalytic A1 subunit of cholera toxin (CT) must be separated from the rest of the toxin. Protein disulfide isomerase (PDI) is thought to mediate CT disassembly by acting as a redox-driven chaperone that actively unfolds the CTA1 subunit. Here, we show that PDI itself unfolds upon contact with CTA1. The substrate-induced unfolding of PDI provides a novel molecular mechanism for holotoxin disassembly: we postulate the expanded hydrodynamic radius of unfolded PDI acts as a wedge to dislodge reduced CTA1 from its holotoxin. The oxidoreductase activity of PDI was not required for CT disassembly, but CTA1 displacement did not occur when PDI was locked in a folded conformation or when its substrate-induced unfo...
Cholera toxin (CT) is transported from the plasma membrane of host cells to the endoplasmic reticulu...
Protein-disulfide isomerase (PDI), with domains arranged as abb′xa′c, is a key enzyme and chaperone ...
<div><p>In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein d...
<div><p>To generate a cytopathic effect, the catalytic A1 subunit of cholera toxin (CT) must be sepa...
To generate a cytopathic effect, the catalytic A1 subunit of cholera toxin (CT) must be separated fr...
Cholera toxin (CT) is composed of a disulfide-linked A1/A2 heterodimer and a ring-like, cell-binding...
Protein-disulfide isomerase (PDI) has been proposed to exhibit an unfoldase activity against the c...
Abstract Cholera toxin (CT) and Escherichia coli heat-labile enterotoxin (LT) are structurally simil...
The endoplasmic reticulum (ER) quality control system retains nascent polypeptides in the organelle ...
Proteostasis in the endoplasmic reticulum (ER) is maintained, in part, through the activity of prote...
Cholera toxin (CT) consists of a catalytic A1 subunit, an A2 linker, and a homopentameric cell-bindi...
Cholera toxin (CT) consists of a catalytic A1 subunit, an A2 linker, and a homopentameric cell-bind...
AbstractFollowing retrograde transport to the endoplasmic reticulum (ER) the A-subunit of cholera to...
Background: Human protein-disulfide isomerase (hPDI) is a key enzyme and chaperone for protein foldi...
Protein disulfide isomerase (PDI) is a multifunctional protein catalysing the formation of disulfide...
Cholera toxin (CT) is transported from the plasma membrane of host cells to the endoplasmic reticulu...
Protein-disulfide isomerase (PDI), with domains arranged as abb′xa′c, is a key enzyme and chaperone ...
<div><p>In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein d...
<div><p>To generate a cytopathic effect, the catalytic A1 subunit of cholera toxin (CT) must be sepa...
To generate a cytopathic effect, the catalytic A1 subunit of cholera toxin (CT) must be separated fr...
Cholera toxin (CT) is composed of a disulfide-linked A1/A2 heterodimer and a ring-like, cell-binding...
Protein-disulfide isomerase (PDI) has been proposed to exhibit an unfoldase activity against the c...
Abstract Cholera toxin (CT) and Escherichia coli heat-labile enterotoxin (LT) are structurally simil...
The endoplasmic reticulum (ER) quality control system retains nascent polypeptides in the organelle ...
Proteostasis in the endoplasmic reticulum (ER) is maintained, in part, through the activity of prote...
Cholera toxin (CT) consists of a catalytic A1 subunit, an A2 linker, and a homopentameric cell-bindi...
Cholera toxin (CT) consists of a catalytic A1 subunit, an A2 linker, and a homopentameric cell-bind...
AbstractFollowing retrograde transport to the endoplasmic reticulum (ER) the A-subunit of cholera to...
Background: Human protein-disulfide isomerase (hPDI) is a key enzyme and chaperone for protein foldi...
Protein disulfide isomerase (PDI) is a multifunctional protein catalysing the formation of disulfide...
Cholera toxin (CT) is transported from the plasma membrane of host cells to the endoplasmic reticulu...
Protein-disulfide isomerase (PDI), with domains arranged as abb′xa′c, is a key enzyme and chaperone ...
<div><p>In contrast to molecular chaperones that couple protein folding to ATP hydrolysis, protein d...