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New insights into the structural basis of alpha 1-antitrypsin deficiency
1Department of Medicine, University of Cambridge, MRC Centre, UK.
Abstract:
The serpin superfamily of serine proteinase inhibitors contains many members but the best-characterized is the plasma protein alpha 1-antitrypsin. its genetic deficiency is associated, in the homozygote, with hepatic damage that may progress to cirrhosis and hepatocellular carcinoma. Low levels of circulating alpha 1-antitrypsin fail to protect the lungs against proteolytic attack and predispose the homozygote to early onset pan-lobular emphysema, bronchiectasis and asthma. The major cause of alpha 1-antitrypsin deficiency, the Z mutation (Glu342Lys), results in the accumulation of protein in the endoplasmic reticulum of the liver. Using a structural approach, we have shown that the hepatic inclusions result from a protein-protein interaction between the reactive centre loop of one molecule and the beta-pleated sheet of a second. This loop-sheet polymerization is now also recognized to be the basis of deficiencies associated with mutations of C1-inhibitor, antithrombin and alpha 1-antichymotrypsin. Our recent solution of a crystal structure of a thermostable mutant of alpha 1-antitrypsin shows the detailed interactions that result in loop-sheet linkage and helps to explain the mechanism of action of this family of proteinase inhibitors.
Insights
Alpha 1-antitrypsin deficiency, caused by the Z mutation, leads to liver damage and lung disease. This study reveals that protein polymerization, specifically loop-sheet linkage, causes these harmful inclusions.
Area of Science:
- Biochemistry
- Molecular Biology
- Genetics
Background:
- Alpha 1-antitrypsin (AAT) is a key serine proteinase inhibitor.
- AAT deficiency, particularly the Z mutation (Glu342Lys), causes severe liver disease (cirrhosis, hepatocellular carcinoma) and lung conditions (emphysema, bronchiectasis, asthma).
Purpose of the Study:
- To elucidate the structural mechanism behind alpha 1-antitrypsin deficiency.
- To understand the protein-protein interactions leading to endoplasmic reticulum accumulation.
Main Methods:
- Structural analysis of alpha 1-antitrypsin.
- X-ray crystallography of a thermostable AAT mutant.
Main Results:
- Hepatic inclusions in AAT deficiency result from a loop-sheet polymerization mechanism.
- This involves interactions between the reactive centre loop of one AAT molecule and the beta-pleated sheet of another.
- This polymerization mechanism is also implicated in deficiencies of C1-inhibitor, antithrombin, and alpha 1-antichymotrypsin.
Conclusions:
- The loop-sheet polymerization explains the pathogenesis of alpha 1-antitrypsin deficiency.
- Understanding these interactions provides insight into the mechanism of serpin proteinase inhibitors.
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