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Biochimica Et Biophysica Acta|November 29, 1985
Proximity of the catalytic region and the kringle 2 domain in the closed conformer of plasminogenL Bányai, L PatthyThe EMBO Journal|September 28, 2001
NMR structure of the LCCL domain and implications for DFNA9 deafness disorderE Liepinsh, M Trexler, A Kaikkonen, et al.Biochimica Et Biophysica Acta|June 28, 1984
Residues Cys-1 and Cys-79 are not essential for refolding of reduced-denatured kringle 4 fragment of human plasminogenM Trexler, L PatthyProtein Science : a Publication of the Protein Society|August 19, 1999
The NTR module: domains of netrins, secreted frizzled related proteins, and type I procollagen C-proteinase enhancer protein are homologous with tissue inhibitors of metalloproteasesL Bányai, L PatthyThe Journal of Biological Chemistry|May 25, 1984
Importance of intramolecular interactions in the control of the fibrin affinity and activation of human plasminogenL Bányai, L PatthyProceedings of the National Academy of Sciences of the United States of America|May 1, 1983
Folding autonomy of the kringle 4 fragment of human plasminogenM Trexler, L PatthyFEBS Letters|November 24, 1999
The PAN module: the N-terminal domains of plasminogen and hepatocyte growth factor are homologous with the apple domains of the prekallikrein family and with a novel domain found in numerous nematode proteinsH Tordai, L Bányai, L PatthyFEBS Letters|October 31, 1983
Common evolutionary origin of the fibrin-binding structures of fibronectin and tissue-type plasminogen activatorL Bányai, A Váradi, L PatthyThe Biochemical Journal|March 1, 1994
The gelatin-binding site of human 72 kDa type IV collagenase (gelatinase A)L Bányai, H Tordai, L PatthyBiochemistry|January 29, 1985
Analysis and identification of aromatic signals in the proton magnetic resonance spectrum of the kringle 4 fragment from human plasminogenA De Marco, N D Pluck, L Bányai, et al.Pageof 9