Lung

, Volume 168, Supplement 1, pp 530–534 | Cite as

The molecular structure and pathology ofα 1-antitrypsin

  • R. W. Carell
α1-Antitrypsin Deficiency: Diagnosis, Treatment, And Control

Abstract

Antitrypsin is the predominant protease inhibitor in human plasma. Despite its name, its prime function is an inhibitor of neutrophil elastase. It is the archetype of a family of protease inhibitors (serpins) characteristically with a MW 50,000 and a highly ordered tertiary structure. Its role is as a protector of vulnerable tissues against digestion by leukocyte enzymes, and plasma deficiency predisposes to premature emphysema. Northern Europeans are uniquely susceptible to deficiency due to the frequency of two mutants (Z & S) both having substitutions at glutamic acids that form key salt bridges in the molecule. In the reactive center of antitrypsin is a labile methionine which allows leucocytes to switch off inhibitory activity but this contributes to the accelerated lung degeneration in cigarette smokers. Although plasma replacement therapy is one option for treatment a first approach is to avoid smoking and other environmental irritants.

Key words

Antitrypsin Protease inhibitor Neutrophil elastase Molecular structure Mutants, Z and S genes 

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References

  1. Boswell DR, Carrell RW (1986) Clinical aspects of the serpins: a family of plasma protease inhibitors. Rec Adv Clin Immunol 4:16Google Scholar
  2. Brantly M, Nukiwa T, Crystal RG (1988) Molecular basis of alpha-1-antitrypsin deficiency. Am J Med 84:13–31PubMedGoogle Scholar
  3. Carrell RW (1986)α-Antitrypsin: molecular pathology, leukocytes and tissue damage. Perspectives. J Clin Invest 78:1427–1431PubMedCrossRefGoogle Scholar
  4. Carrell RW, Aulak KS and Owen MC (1989) The molecular pathology of the serpins. Mol Biol Med 6:35–42PubMedGoogle Scholar
  5. Cox DW, Woo SLC, Mansfield T (1985) DNA restriction fragments associated withα 1-antitrypsin indicate a single origin for deficiency allele PI Z. Nature 316:79–81PubMedCrossRefGoogle Scholar
  6. Loebermann TR, Deisenhofer J, Huber R (1984) Human alpha-1-proteinase inhibitor: crystal structure analysis of two crystal modifications, molecular model and preliminary analysis of the implications for function. J Mol Biol 177:531–556.PubMedCrossRefGoogle Scholar
  7. Travis J, Salvesen GS (1983) Human plasma proteinase inhibitors. Annu Rev Biochem 52:655–709PubMedCrossRefGoogle Scholar

Copyright information

© Springer-Verlag New York Inc 1990

Authors and Affiliations

  • R. W. Carell
    • 1
  1. 1.Department of HematologyUniversity of CambridgeCambridgeUnited Kingdom

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