Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesterase

This study analyses venom from the elapid krait snake Bungarus sindanus, which contains a high level of acetylcholinesterase (AChE) activity. The enzyme showed optimum activity at alkaline pH (8.5) and 45ºC. Krait venom AChE was inhibited by substrate. Inhibition was significantly reduced by using a...

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Main Authors: M Ahmed, N Latif, RA Khan, A Ahmad, JBT Rocha, CM Mazzanti, MD Bagatini, VM Morsch, MRC Schetinger
Format: Article
Language:English
Published: SciELO 2012-01-01
Series:Journal of Venomous Animals and Toxins including Tropical Diseases
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1678-91992012000200014
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spelling doaj-65daff77fcbb485daa4c67ce88b7527f2020-11-25T00:37:47ZengSciELOJournal of Venomous Animals and Toxins including Tropical Diseases1678-91992012-01-0118223624310.1590/S1678-91992012000200014Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesteraseM AhmedN LatifRA KhanA AhmadJBT RochaCM MazzantiMD BagatiniVM MorschMRC SchetingerThis study analyses venom from the elapid krait snake Bungarus sindanus, which contains a high level of acetylcholinesterase (AChE) activity. The enzyme showed optimum activity at alkaline pH (8.5) and 45ºC. Krait venom AChE was inhibited by substrate. Inhibition was significantly reduced by using a high ionic strength buffer; low ionic strength buffer (10 mM PO4 pH 7.5) inhibited the enzyme by 1. 5mM AcSCh, while high ionic strength buffer (62 mM PO4 pH 7.5) inhibited it by 1 mM AcSCh. Venom acetylcholinesterase was also found to be thermally stable at 45ºC; it only lost 5% of its activity after incubation at 45ºC for 40 minutes. The Michaelis-Menten constant (Km) for acetylthiocholine iodide hydrolysis was found to be 0.068 mM. Krait venom acetylcholinesterase was also inhibited by ZnCl2, CdCl2, and HgCl2 in a concentrationdependent manner. Due to the elevated levels of AChE with high catalytic activity and because it is more stable than any other sources, Bungarus sindanus venom is highly valuable for biochemical studies of this enzyme.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1678-91992012000200014acetylcholinesteraseinhibitionkraitionic strengthacetylthiocholine iodideBungarus sindanussnake venom
collection DOAJ
language English
format Article
sources DOAJ
author M Ahmed
N Latif
RA Khan
A Ahmad
JBT Rocha
CM Mazzanti
MD Bagatini
VM Morsch
MRC Schetinger
spellingShingle M Ahmed
N Latif
RA Khan
A Ahmad
JBT Rocha
CM Mazzanti
MD Bagatini
VM Morsch
MRC Schetinger
Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesterase
Journal of Venomous Animals and Toxins including Tropical Diseases
acetylcholinesterase
inhibition
krait
ionic strength
acetylthiocholine iodide
Bungarus sindanus
snake venom
author_facet M Ahmed
N Latif
RA Khan
A Ahmad
JBT Rocha
CM Mazzanti
MD Bagatini
VM Morsch
MRC Schetinger
author_sort M Ahmed
title Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesterase
title_short Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesterase
title_full Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesterase
title_fullStr Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesterase
title_full_unstemmed Enzymatic and biochemical characterization of Bungarus sindanus snake venom acetylcholinesterase
title_sort enzymatic and biochemical characterization of bungarus sindanus snake venom acetylcholinesterase
publisher SciELO
series Journal of Venomous Animals and Toxins including Tropical Diseases
issn 1678-9199
publishDate 2012-01-01
description This study analyses venom from the elapid krait snake Bungarus sindanus, which contains a high level of acetylcholinesterase (AChE) activity. The enzyme showed optimum activity at alkaline pH (8.5) and 45ºC. Krait venom AChE was inhibited by substrate. Inhibition was significantly reduced by using a high ionic strength buffer; low ionic strength buffer (10 mM PO4 pH 7.5) inhibited the enzyme by 1. 5mM AcSCh, while high ionic strength buffer (62 mM PO4 pH 7.5) inhibited it by 1 mM AcSCh. Venom acetylcholinesterase was also found to be thermally stable at 45ºC; it only lost 5% of its activity after incubation at 45ºC for 40 minutes. The Michaelis-Menten constant (Km) for acetylthiocholine iodide hydrolysis was found to be 0.068 mM. Krait venom acetylcholinesterase was also inhibited by ZnCl2, CdCl2, and HgCl2 in a concentrationdependent manner. Due to the elevated levels of AChE with high catalytic activity and because it is more stable than any other sources, Bungarus sindanus venom is highly valuable for biochemical studies of this enzyme.
topic acetylcholinesterase
inhibition
krait
ionic strength
acetylthiocholine iodide
Bungarus sindanus
snake venom
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1678-91992012000200014
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