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Inhibition of Serine Proteinases Plasmin, Trypsin, Subtilisin A, Cathepsin G, and Elastase by LEKTI: A Kinetic Analysis

Authors :
Ya'an Kang
Kenji Mitsudo
Arumugam Jayakumar
Mitchell J. Frederick
Ying C. Henderson
Gary L. Clayman
and Adel K. El-Naggar M.D.
Mary Wang
Source :
Biochemistry. 42:3874-3881
Publication Year :
2003
Publisher :
American Chemical Society (ACS), 2003.

Abstract

The human LEKTI gene encodes a putative 15-domain serine proteinase inhibitor and has been linked to the inherited disorder known as Netherton syndrome. In this study, human recombinant LEKTI (rLEKTI) was purified using a baculovirus/insect cell expression system, and the inhibitory profile of the full-length rLEKTI protein was examined. Expression of LEKTI in Sf9 cells showed the presence of disulfide bonds, suggesting the maintenance of the tertiary protein structure. rLEKTI inhibited the serine proteinases plasmin, subtilisin A, cathepsin G, human neutrophil elastase, and trypsin, but not chymotrypsin. Moreover, rLEKTI did not inhibit the cysteine proteinase papain or cathepsin K, L, or S. Further, rLEKTI inhibitory activity was inactivated by treatment with 20 mM DTT, suggesting that disulfide bonds are important to LEKTI function. The inhibition of plasmin, subtilisin A, cathepsin G, elastase, and trypsin by rLEKTI occurred through a noncompetitive-type mechanism, with inhibitory constants (K(i)) of 27 +/- 5, 49 +/- 3, 67 +/- 6, 317 +/-36, and 849 +/- 55 nM, respectively. Thus, LEKTI is likely to be a major physiological inhibitor of multiple serine proteinases.

Details

ISSN :
15204995 and 00062960
Volume :
42
Database :
OpenAIRE
Journal :
Biochemistry
Accession number :
edsair.doi.dedup.....5c1a378ffe2d6037ede14bee8ecfb2af
Full Text :
https://doi.org/10.1021/bi027029v