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  4. Involvement of residues 296-299 in the enzymatic activity of tissue-type plasminogen activator
 
research article

Involvement of residues 296-299 in the enzymatic activity of tissue-type plasminogen activator

Paoni, N. F.
•
Refino, C. J.
•
Brady, K.
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1992
Protein engineering

The tetra-alanine substitution variant KHRR 296-299 AAAA of tissue-type plasminogen activator (t-PA) was previously shown to have enhanced fibrin specificity and enhanced activity in the presence of fibrin compared with the wild-type form of the molecule. The structural requirements for these alterations in enzymatic activity were investigated by constructing several amino acid substitution variants at each of the positions from 296 to 299 and evaluating their activities under a variety of conditions. Effects on plasminogen activator activity were common among the point mutants at positions 296-299; nearly all had a phenotype similar to the KHRR 296-299 AAAA variant. The greatest effects on enzymatic function were found with multiple substitution variants, but some single charge reversals and proline substitutions had substantial effects. The enhanced fibrin specificity of KHRR 296-299 AAAA t-PA results in less fibrinogenolysis than seen with wild-type t-PA. Approximately four times greater concentration of KHRR 296-299 AAAA compared with wild-type t-PA was required to consume 50% of the fibrinogen in human plasma.

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Type
research article
DOI
10.1093/protein/5.3.259
PubMed ID

1409547

Author(s)
Paoni, N. F.
Refino, C. J.
Brady, K.
Pena, L. C.
Nguyen, H. V.
Kerr, E. M.
Johnson, A. C.
Wurm, F. M.  
van Reis, R.
Botstein, D.
Date Issued

1992

Published in
Protein engineering
Volume

5

Issue

3

Start page

259

End page

66

Subjects

Alanine/*chemistry

•

Amino Acid Sequence

•

Fibrin/metabolism

•

Fibrinogen/metabolism

•

Fibrinolysis

•

Models

•

Molecular

•

Molecular Sequence Data

•

Mutagenesis

•

Site-Directed

•

Oligopeptides/metabolism

•

Plasma

•

Plasminogen/metabolism

•

Protein Engineering

•

Tissue Plasminogen Activator/chemistry/*metabolism

Note

Department of Cardiovascular Research, Genentech, Inc., South San Francisco, CA 94080.

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LBTC  
Available on Infoscience
June 5, 2007
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/7628
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