Title of article
Biochemical and molecular modeling analysis of the ability of two p-aminobenzamidine-based sorbents to selectively purify serine proteases (fibrinogenases) from snake venoms
Author/Authors
De-Simone، نويسنده , , S.G. and Correa-Netto، نويسنده , , C. and Antunes، نويسنده , , O.A.C. and De-Alencastro، نويسنده , , R.B. and Silva Jr.، نويسنده , , F.P.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
9
From page
1
To page
9
Abstract
Snake venoms contain several trypsin-like enzymes with equivalent physicochemical characteristics and similar inhibition profiles. These are rather difficult to separate by classical purification procedures and therefore constitute a good model for affinity chromatography analysis. Some of these trypsin homologues present fibrinogenase activity, mimicking one or more features of the central mammalian coagulation enzyme, thrombin. It was previously demonstrated that a number of amidine derivatives are able to interact specifically with some of these serine proteases. To understand the enzyme–sorbent interactions we have investigated the ability of two commercially available benzamidine affinity matrices to purify thrombin-like serine proteases (TLSP) with similar biological properties from two snake venoms (Bothrops jararacussu and Lachesis muta rhombeata). Curiously, each sorbent retained a single but distinct TLSP from each venom with high yield. Molecular modeling analysis suggested that hydrophobic interactions within a specific region on the surface of these enzymes could be generated to explain this exquisite specificity. In addition, it was demonstrated that a specific tandem alignment of the two benzamidine sorbents enables the purification of three other enzymes from B. jararacussu venom.
Keywords
Thrombin-like , Bothrops jararacussu , serine proteinase , affinity chromatography , Lachesis muta rhombeata , molecular modelling , Enzymatic specificity , p-Aminobenzamidine
Journal title
Journal of Chromatography B
Serial Year
2005
Journal title
Journal of Chromatography B
Record number
1459095
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