AbstractThe common Z mutant (Glu342Lys) of α1-antitrypsin results in the formation of polymers that are retained within hepatocytes. This causes liver disease whilst the plasma deficiency of an important proteinase inhibitor predisposes to emphysema. The Thr114Phe and Gly117Phe mutations border a surface cavity identified as a target for rational drug design. These mutations preserve inhibitory activity but reduce the polymerisation of wild-type native α1-antitrypsin in vitro and increase secretion in a Xenopus oocyte model of disease. To understand these effects, we have crystallised both mutants and solved their structures. The 2.2 Å structure of Thr114Phe α1-antitrypsin demonstrates that the effects of the mutation are mediated entirely ...
The common severe Z mutation (E342K) of α1-antitrypsin forms intracellular polymers that are associa...
Mutant Z α1-antitrypsin (E342K) accumulates as polymers within the endoplasmic reticulum (ER) of hep...
Misfolding, polymerisation and defective secretion of functional α1-antitrypsin underlies the predis...
The common Z mutant (Glu342Lys) of α1-antitrypsin results in the formation of polymers that are reta...
AbstractThe common Z mutant (Glu342Lys) of α1-antitrypsin results in the formation of polymers that ...
Severe α1 -antitrypsin deficiency results from the Z allele (Glu342Lys) that causes the accumulation...
Conformational diseases are caused by a structural rearrangement within a protein that results in ab...
AbstractThe human serine protease inhibitor (serpin) α-1 antitrypsin (α1-AT) protects tissues from p...
Protein misfolding is associated with a range of diseases and occurs when a protein meanders from it...
A thermostable mutation, F51L, at the hydrophobic core of human α1- antitrypsin (α1AT) increased the...
α1-Antitrypsin (α1AT) deficiency, the most common serpinopathy, results in both emphysema and liver ...
The hepatic secretory protein a1-antitrypsin, a member of the serpin family of serine proteinase inh...
Background: The protein α1-antitrypsin is a prototype member of the serpin (serine protease inhibito...
The Z mutant of α1-antitrypsin (Glu342Lys) causes a domain swap and the formation of intrahepatic po...
Serine protease inhibitors (serpins) are metastable in their native state. This strain, which is rel...
The common severe Z mutation (E342K) of α1-antitrypsin forms intracellular polymers that are associa...
Mutant Z α1-antitrypsin (E342K) accumulates as polymers within the endoplasmic reticulum (ER) of hep...
Misfolding, polymerisation and defective secretion of functional α1-antitrypsin underlies the predis...
The common Z mutant (Glu342Lys) of α1-antitrypsin results in the formation of polymers that are reta...
AbstractThe common Z mutant (Glu342Lys) of α1-antitrypsin results in the formation of polymers that ...
Severe α1 -antitrypsin deficiency results from the Z allele (Glu342Lys) that causes the accumulation...
Conformational diseases are caused by a structural rearrangement within a protein that results in ab...
AbstractThe human serine protease inhibitor (serpin) α-1 antitrypsin (α1-AT) protects tissues from p...
Protein misfolding is associated with a range of diseases and occurs when a protein meanders from it...
A thermostable mutation, F51L, at the hydrophobic core of human α1- antitrypsin (α1AT) increased the...
α1-Antitrypsin (α1AT) deficiency, the most common serpinopathy, results in both emphysema and liver ...
The hepatic secretory protein a1-antitrypsin, a member of the serpin family of serine proteinase inh...
Background: The protein α1-antitrypsin is a prototype member of the serpin (serine protease inhibito...
The Z mutant of α1-antitrypsin (Glu342Lys) causes a domain swap and the formation of intrahepatic po...
Serine protease inhibitors (serpins) are metastable in their native state. This strain, which is rel...
The common severe Z mutation (E342K) of α1-antitrypsin forms intracellular polymers that are associa...
Mutant Z α1-antitrypsin (E342K) accumulates as polymers within the endoplasmic reticulum (ER) of hep...
Misfolding, polymerisation and defective secretion of functional α1-antitrypsin underlies the predis...