Protease inhibition by metastable serine protease inhibitors (serpins) is mediated by one of the largest functional intradomain conformational changes known in biology. In this extensive structural rearrangement, protease–serpin complex formation triggers cleavage of the serpin reactive center loop (RCL), its subsequent insertion into central β-sheet A, and covalent trapping of the target protease. In this study, we present the first detailed accelerated molecular dynamics simulation of the insertion of the fully cleaved RCL in α-1-antitrypsin (α<sub>1</sub>AT), the archetypal member of the family of human serpins. Our results reveal internal water pathways that allow the initial incorporation of side chains of RCL residues into the protein...
The reactive site loop of the serpin family of serine proteinase inhibitors is flexible and can adop...
The common severe Z mutation (E342K) of alpha(1)-antitrypsin forms intracellular polymers that are a...
α(1)-Antitrypsin, the archetypal member of the serpin superfamily, is a metastable protein prone to ...
The conformational plasticity of serpins underlies both their activities as protease inhibitors and ...
AbstractThe human serine protease inhibitor (serpin) α-1 antitrypsin (α1-AT) protects tissues from p...
Background: The protein α1-antitrypsin is a prototype member of the serpin (serine protease inhibito...
Serine protease inhibitors (serpins) are metastable in their native state. This strain, which is rel...
AbstractBackground The protein α1-antitrypsin is a prototype member of the serpin (serine protease i...
Protease inhibitors of the serpin family are characterised by a metastable native fold which is nece...
Metastability of the native form of proteins has been recognized as a mechanism of biological regula...
Serine proteases are essential for many physiological processes and require tight regulation by seri...
The common severe Z mutation (E342K) of α1-antitrypsin forms intracellular polymers that are associa...
AbstractBackground: The inhibitors that belong to the serpin family are widely distributed regulator...
The serpins are a family of proteinase inhibitors that play a central role in the control of proteol...
The structure of the intact form of the serpin a,-proteinase inhibitor has been modeled based on the...
The reactive site loop of the serpin family of serine proteinase inhibitors is flexible and can adop...
The common severe Z mutation (E342K) of alpha(1)-antitrypsin forms intracellular polymers that are a...
α(1)-Antitrypsin, the archetypal member of the serpin superfamily, is a metastable protein prone to ...
The conformational plasticity of serpins underlies both their activities as protease inhibitors and ...
AbstractThe human serine protease inhibitor (serpin) α-1 antitrypsin (α1-AT) protects tissues from p...
Background: The protein α1-antitrypsin is a prototype member of the serpin (serine protease inhibito...
Serine protease inhibitors (serpins) are metastable in their native state. This strain, which is rel...
AbstractBackground The protein α1-antitrypsin is a prototype member of the serpin (serine protease i...
Protease inhibitors of the serpin family are characterised by a metastable native fold which is nece...
Metastability of the native form of proteins has been recognized as a mechanism of biological regula...
Serine proteases are essential for many physiological processes and require tight regulation by seri...
The common severe Z mutation (E342K) of α1-antitrypsin forms intracellular polymers that are associa...
AbstractBackground: The inhibitors that belong to the serpin family are widely distributed regulator...
The serpins are a family of proteinase inhibitors that play a central role in the control of proteol...
The structure of the intact form of the serpin a,-proteinase inhibitor has been modeled based on the...
The reactive site loop of the serpin family of serine proteinase inhibitors is flexible and can adop...
The common severe Z mutation (E342K) of alpha(1)-antitrypsin forms intracellular polymers that are a...
α(1)-Antitrypsin, the archetypal member of the serpin superfamily, is a metastable protein prone to ...