首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Mass spectrometric-based revision of the structure of a cysteine-rich peptide toxin with gamma-carboxyglutamic acid TxVIIA from the sea snail Conus textile.
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Mass spectrometric-based revision of the structure of a cysteine-rich peptide toxin with gamma-carboxyglutamic acid TxVIIA from the sea snail Conus textile.

机译:基于质谱的海螺Conus纺织品中富含半胱氨酸的肽毒素TxVIIA的结构修订。

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摘要

A mollusk-specific toxin, TxVIIA, having potent paralytic activity was isolated from the venom of sea snail Conus textile (Fainzilber M et al., 1991, Eur J Biochem 202:589-595). The structure reported above was based upon amino acid analysis and the Edman degradation. We have recently reinvestigated this toxin employing some of the most novel techniques in mass spectrometry. We now report a revised structure based primarily on high-energy collision-induced dissociation analysis of the two Asp17-N peptides of the reduced, pyridinylethyl derivative representing the entire sequence using matrix-assisted laser desorption ionization (MALDI) as CGGYSTYC gamma VDS gamma CCSDNCVRSYCTLF-NH2 (gamma, gamma-carboxyglutamic acid or Gla). The N-terminus of the previous sequence was incorrect, apparently due to a side reaction of reduction and alkylation, which led to the erroneous assignment of Trp for the N-terminal residue. In addition, the last two C-terminal amino acids and the C-terminal amidation had not been detected. Also, a combination of electrospray ionization mass spectrometry and positive and negative ion MALDI mass spectrometry provided information on the molecular weights of the native and derivatized toxin and presence of two Gla residues. Thus, TxVIIA does not have an "unusual" sequence as previously reported, but in fact belongs to the conserved Cys framework for omega- and delta-conotoxins. However, the four net negative charges with the cysteine-rich structure of this revised sequence is highly unusual for conopeptides.
机译:从海蜗牛Conus纺织品的毒液中分离出具有有效麻痹活性的软体动物特异性毒素TxVIIA(Fainzilber M等,1991,Eur J Biochem 202:589-595)。以上报道的结构基于氨基酸分析和埃德曼降解。我们最近使用质谱中一些最新颖的技术对这种毒素进行了重新研究。现在,我们报告一种修改后的结构,该结构主要基于对还原的吡啶基乙基衍生物的两个Asp17-N肽进行高能碰撞诱导的解离分析,代表使用基质辅助激光解吸电离(MALDI)的整个序列,如CGGYSTYCγVDSγCCSDNCVRSYCTLF -NH 2(γ,γ-羧基谷氨酸或Gla)。先前序列的N端是不正确的,这显然是由于还原和烷基化的副反应,这导致了Trp在N端残基上的错误分配。另外,未检测到最后两个C末端氨基酸和C末端酰胺化。而且,电喷雾电离质谱与正负离子MALDI质谱的结合提供了有关天然毒素和衍生毒素的分子量以及两个Gla残基的存在的信息。因此,TxVIIA不具有先前报道的“异常”序列,但实际上属于ω-和δ-芋螺毒素的保守Cys框架。然而,此修饰序列具有富半胱氨酸结构的四个净负电荷对于conopepteptes来说非常不寻常。

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