首页> 外文期刊>Journal of proteomics >Snake venomics and venom gland transcriptomic analysis of Brazilian coral snakes, Micrurus altirostris and M. corallinus.
【24h】

Snake venomics and venom gland transcriptomic analysis of Brazilian coral snakes, Micrurus altirostris and M. corallinus.

机译:对巴西珊瑚蛇,Micrurus altirostris和M.corallinus的蛇病毒学和蛇毒腺转录组学分析。

获取原文
获取原文并翻译 | 示例
       

摘要

The venom proteomes of Micrurus altirostris and M. corallinus were analyzed by combining snake venomics and venom gland transcriptomic surveys. In both coral snake species, 3FTx and PLA(2) were the most abundant and diversified toxin families. 33 different 3FTxs and 13 PLA(2) proteins, accounting respectively for 79.5% and 13.7% of the total proteins, were identified in the venom of M. altirostris. The venom of M. corallinus comprised 10 3FTx (81.7% of the venom proteome) and 4 (11.9%) PLA(2) molecules. Transcriptomic data provided the full-length amino acid sequences of 18 (M. altirostris) and 10 (M. corallinus) 3FTxs, and 3 (M. altirostris) and 1 (M. corallinus) novel PLA(2) sequences. In addition, venom from each species contained single members of minor toxin families: 3 common (PIII-SVMP, C-type lectin-like, L-amino acid oxidase) and 4 species-specific (CRISP, Kunitz-type inhibitor, lysosomal acid lipase in M. altirostris; serine proteinase in M. corallinus) toxin classes. The finding of a lipase (LIPA) in the venom proteome and in the venom gland transcriptome of M. altirostris supports the view of a recruitment event predating the divergence of Elapidae and Viperidae more than 60 Mya. The toxin profile of both M. altirostris and M. corallinus venoms points to 3FTxs and PLA(2) molecules as the major players of the envenoming process. In M. altirostris venom, all major, and most minor, 3FTxs display highest similarity to type I alpha-neurotoxins, suggesting that these postsynaptically acting toxins may play the predominant role in the neurotoxic effect leading to peripheral paralysis, respiratory arrest, and death. M. corallinus venom posesses both, type I alpha-neurotoxins and a high-abundance (26% of the venom proteome) protein of subfamily XIX of 3FTxs, exhibiting similarity to bucandin from Malayan krait, Bungarus candidus, venom, which enhances acetylcholine release presynaptically. This finding may explain the presynaptic neurotoxicity of M. corallinus venom and the lack of this effect in M. altirostris venom. The anti-Micrurus (corallinus and frontalis) antivenom produced by Instituto Butantan quantitatively immunodepleted the minor toxins from M. altirostris and M. corallinus venoms but showed impaired crossreactivity towards their major 3FTx and PLA(2) molecules. The structural diversity of 3FTxs among Micrurus sp. may underlay the impaired cross-immunoreactivity of the Butantan antivenom towards M. altirostris and M. corallinus toxins, hampering the possibility to raise an antivenom against a simple venom mixture exhibiting paraspecific neutralization of other Micrurus venoms.
机译:蛇毒和蛇毒的转录组学研究相结合,对米氏猕猴和珊瑚藻的毒蛋白质组进行了分析。在这两种珊瑚蛇物种中,3FTx和PLA(2)是最丰富和多样化的毒素家族。在altirostris的毒液中鉴定出33种不同的3FTxs和13种PLA(2)蛋白,分别占总蛋白的79.5%和13.7%。 M.corallinus的毒液包含10个3FTx(占毒液蛋白质组的81.7%)和4个(11.9%)PLA(2)分子。转录组数据提供了18个(M.altirostris)和10(M.corallinus)3FTxs,3个(M.altirostris)和1(M.corallinus)新型PLA(2)序列的全长氨基酸序列。此外,每个物种的毒液都包含少量次要毒素家族的单个成员:3种常见的(PIII-SVMP,C型凝集素样,L-氨基酸氧化酶)和4种特定的(CRISP,Kunitz型抑制剂,溶酶体酸)脂肪链霉菌中的脂肪酶;珊瑚虫中的丝氨酸蛋白酶)毒素类别。在ALT.Mirostris毒液蛋白质组和毒腺转录组中发现脂肪酶(LIPA),支持了一种征募事件的观点,该事件比Elapidae和Viperidae的发散早于60多个Mya。 M. altirostris和M.corallinus毒液的毒素谱都指出3FTxs和PLA(2)分子是毒化过程的主要参与者。在鼠尾草毒液中,所有主要和最次要的3FTx都与I型α-神经毒素具有最高的相似性,这表明这些突触后作用的毒素可能在导致周围性麻痹,呼吸暂停和死亡的神经毒性作用中起主要作用。 M.coralinus毒液同时具有I型α-神经毒素和3FTxs XIX子家族的高丰度蛋白(占毒液蛋白质组的26%),与马来亚蛇,Bungusus candidus,毒液中的bucandin相似,可突触地增强乙酰胆碱的释放。 。这一发现可能解释了珊瑚支原体毒液的突触前神经毒性以及在支原体支原体毒液中这种作用的缺乏。 Instituto Butantan生产的抗微粘虫(corallinus和frontalis)抗蛇毒素定量免疫消耗了M. altirostris和M.corallinus毒液中的次要毒素,但与它们的主要3FTx和PLA(2)分子的交叉反应性减弱。 Micrurus sp。3FTxs的结构多样性。可能会削弱Butantan抗虫对M.altirostris和M.coralinus毒素的交叉免疫反应性,从而阻碍了针对显示出其他Micrurus毒液的超特异中和作用的简单毒液来提高抗毒液的可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号