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Exploring active sites of cholinesterases by inhibition with bambuterol and haloxon (CROSBI ID 100205)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Kovarik, Zrinka ; Bosak, Anita ; Šinko, Goran ; Latas, Tatjana Exploring active sites of cholinesterases by inhibition with bambuterol and haloxon // Croatica chemica acta, 76 (2003), 1; 63-67-x

Podaci o odgovornosti

Kovarik, Zrinka ; Bosak, Anita ; Šinko, Goran ; Latas, Tatjana

engleski

Exploring active sites of cholinesterases by inhibition with bambuterol and haloxon

The paper describes the inhibition of mouse acetylcholinesterase (AChE ; EC 3.1.1.7) and mouse, human, and horse butyrylcholinesterase (BChE ; EC 3.1.1.8) by 5-[2-(tert-butylamino)-1-hydroxyethyl]-m-phenylene-bis(dimethylcarbamate) hydrochloride (bambuterol) and by O, O-di-(2-chloroethyl)-O-(3-chloro-4-methylcoumarin-7-yl) phosphate (haloxon). The haloxon inhibition rate constant (ki) for mouse BChE was 3.7 x 107 min-1 M-1, which was 40-fold higher than the rate constant for mouse AChE. Bambuterol inhibition of horse BChE (ki = 2.1 x 105 min-1 M-1) was about 25-fold slower than that of human or mouse BChE, whereas the respective haloxon inhibition of horse BChE (ki = 1.2 x 107 min-1 M-1) was about 2-3-fold slower. The sequence alignments and computational model of the three-dimensional structure of horse BChE suggest that residues inside the active site at positions 69, 277 and 285 are important for the differences in the inhibition of these three BChE species.

mouse acetylcholinesterase; mouse; human and horse butyrylcholinesterase; inhibition; carbamate; organophosphate; haloxon; bambuterol

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Podaci o izdanju

76 (1)

2003.

63-67-x

objavljeno

0011-1643

Povezanost rada

Kemija

Indeksiranost