TY - JOUR
T1 - Purification and partial characterisation of α2-antiplasmin and plasmin(ogen) from ostrich plasma
AU - Thomas, Adele R.
AU - Naudé, Ryno J.
AU - Oelofsen, Willem
AU - Naganuma, Takako
AU - Muramoto, Koji
N1 - Funding Information:
The authors gratefully acknowledge the financial support granted by the National Research Foundation and the University of Port Elizabeth, and would like to extend their sincere gratitude to the Grahamstown abattoir, South Africa, for the experimental material.
PY - 2001
Y1 - 2001
N2 - This study reports the isolation and partial characterisation of the ostrich serpin, α2AP, and its target enzyme, ostrich plasmin, in its active and inactive proenzyme, namely plasminogen, forms. Ostrich α2AP was purified using L-lysine-Sepharose chromatography, ammonium sulfate fractionation, and SuperQ-650S and ostrich LBSI-Sepharose chromatographies. It revealed a Mr of 84 K (thousand) and had one and two N-terminal amino acids in common with 11 of those of human and bovine α2AP, respectively. It showed the largest inhibitory effect on ostrich plasmin, followed by bovine trypsin and plasmin, respectively, and much less plasmin inhibition than bovine aprotinin, but much more so than human α2AP, DFP and EACA. Ostrich plasminogen was highly purified after L-lysine-Sepharose chromatography and showed a Mr of 92 K, a total of 775 amino acids and its N-terminal sequence showed ∼53% identity with those of human, rabbit, cat, and ox plasminogens. Ostrich plasmin, obtained by the urokinase-activation of ostrich plasminogen, revealed a Mr of 78 K, a total of 638 amino acids, an N-terminal sequence showing two to four residues identical to five of those of human, cat, dog, rabbit, and ox plasmins, and pH and temperature optima of 8.0 and 40°C, respectively.
AB - This study reports the isolation and partial characterisation of the ostrich serpin, α2AP, and its target enzyme, ostrich plasmin, in its active and inactive proenzyme, namely plasminogen, forms. Ostrich α2AP was purified using L-lysine-Sepharose chromatography, ammonium sulfate fractionation, and SuperQ-650S and ostrich LBSI-Sepharose chromatographies. It revealed a Mr of 84 K (thousand) and had one and two N-terminal amino acids in common with 11 of those of human and bovine α2AP, respectively. It showed the largest inhibitory effect on ostrich plasmin, followed by bovine trypsin and plasmin, respectively, and much less plasmin inhibition than bovine aprotinin, but much more so than human α2AP, DFP and EACA. Ostrich plasminogen was highly purified after L-lysine-Sepharose chromatography and showed a Mr of 92 K, a total of 775 amino acids and its N-terminal sequence showed ∼53% identity with those of human, rabbit, cat, and ox plasminogens. Ostrich plasmin, obtained by the urokinase-activation of ostrich plasminogen, revealed a Mr of 78 K, a total of 638 amino acids, an N-terminal sequence showing two to four residues identical to five of those of human, cat, dog, rabbit, and ox plasmins, and pH and temperature optima of 8.0 and 40°C, respectively.
KW - Ostrich
KW - Plasma
KW - Plasmin
KW - Plasminogen
KW - Serpin
KW - α-antiplasmin
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UR - http://www.scopus.com/inward/citedby.url?scp=0034956263&partnerID=8YFLogxK
U2 - 10.1016/S1096-4959(01)00396-7
DO - 10.1016/S1096-4959(01)00396-7
M3 - Article
C2 - 11435135
AN - SCOPUS:0034956263
SN - 1096-4959
VL - 129
SP - 809
EP - 820
JO - Comparative Biochemistry and Physiology - B Biochemistry and Molecular Biology
JF - Comparative Biochemistry and Physiology - B Biochemistry and Molecular Biology
IS - 4
ER -