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矛头蝮蛇(巨蝮)毒液中一种碱性D49磷脂酶A2(LmTX-I)的功能特性

Functional characterization of a basic D49 phospholipase A2 (LmTX-I) from the venom of the snake Lachesis muta muta (bushmaster).

作者信息

Damico Daniela C S, Bueno Lilian G F, Rodrigues-Simioni Léa, Marangoni Sérgio, da Cruz-Höfling Maria Alice, Novello José Camillo

机构信息

Departamento de Bioquímica, Instituto de Biologia, Universidade Estadual de Campinas (UNICAMP), P.O. Box 6109, Campinas, SP, Brazil.

出版信息

Toxicon. 2006 Jun 1;47(7):759-65. doi: 10.1016/j.toxicon.2006.02.007. Epub 2006 Apr 19.

Abstract

The whole venom of Lachesis muta muta is preponderantly neurotoxic but moderately myotoxic on the chick biventer cervicis preparation (BCp). We have now examined these toxic activities of a basic phospholipase A(2), LmTX-I, isolated from the whole venom. LmTX-I caused a significant concentration-dependent neuromuscular blockade in the BCp. The time to produce 50% neuromuscular blockade was 14.7+/-0.75 min (30 microg/ml), 23.6+/-0.9 min (10 microg/ml), 34+/-1.7 min (2.5 microg/ml) and 39.2+/-3.6 min (1 microg/ml), (n=5/concentration; p<0.05). Complete blockade with all tested concentrations was not accompanied by inhibition of the response to ACh. At the highest concentration, LmTX-I (30 microg/ml) significantly reduced contractures elicited by exogenous KCl (20mM), increased the release of creatine kinase (1542.5+/-183.9 IU/L vs 442.7+/-39.8 IU/L for controls after 120 min, p<0.05), and induced the appearance of degenerating muscle fibers ( approximately 15%). Quantification of myonecrosis indicated 14.8+/-0.8 and 2.0+/-0.4%, with 30 and 10 microg/mlvenom concentration, respectively, against 1.07+/-0.4% for control preparations. The findings indicate that the basic PLA(2) present on venom from L. m. muta (LmTX-I) possesses a dominant neurotoxic action on isolated chick nerve-muscle preparations, whereas myotoxicity was mainly observed at the highest concentration used (30 microg/ml). These effects of LmTX-I closely reproduce the effects of the whole venom of L. m. muta in chick neuromuscular preparations.

摘要

矛头蝮蛇(Lachesis muta muta)的全毒对鸡颈二腹肌标本(BCp)具有明显的神经毒性,但肌毒性中等。我们现在研究了从全毒中分离出的一种碱性磷脂酶A₂,即LmTX-I的这些毒性活性。LmTX-I在BCp中引起了显著的浓度依赖性神经肌肉阻滞。产生50%神经肌肉阻滞的时间分别为14.7±0.75分钟(30微克/毫升)、23.6±0.9分钟(10微克/毫升)、34±1.7分钟(2.5微克/毫升)和39.2±3.6分钟(1微克/毫升),(每组浓度n = 5;p<0.05)。所有测试浓度下的完全阻滞均未伴随对乙酰胆碱(ACh)反应的抑制。在最高浓度时,LmTX-I(30微克/毫升)显著降低了由外源性氯化钾(20毫摩尔)引起的挛缩,增加了肌酸激酶的释放(120分钟后,对照组为442.7±39.8国际单位/升,LmTX-I组为1542.5±183.9国际单位/升,p<0.05),并诱导出现了约15%的变性肌纤维。肌坏死的定量分析表明,毒液浓度为30和10微克/毫升时,肌坏死率分别为14.8±0.8%和2.0±0.4%,而对照标本为1.07±0.4%。这些发现表明,矛头蝮蛇毒中的碱性磷脂酶A₂(LmTX-I)对分离的鸡神经肌肉标本具有主要的神经毒性作用,而肌毒性主要在所用的最高浓度(30微克/毫升)时观察到。LmTX-I的这些作用与矛头蝮蛇全毒对鸡神经肌肉标本的作用非常相似。

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