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从波氏矛头蝮蛇毒液中提取的 PhTX-I 肌肉毒素的化学修饰:对结构、酶学和药理学性质的影响。

Chemical modifications of PhTX-I myotoxin from Porthidium hyoprora snake venom: effects on structural, enzymatic, and pharmacological properties.

机构信息

Department of Biochemistry, Institute of Biology, State University of Campinas (UNICAMP), P.O. Box 6109, 13083-970 Campinas, SP, Brazil.

出版信息

Biomed Res Int. 2013;2013:103494. doi: 10.1155/2013/103494. Epub 2012 Dec 19.

Abstract

We recently described the isolation of a basic PLA2 (PhTX-I) from Porthidium hyoprora snake venom. This toxin exhibits high catalytic activity, induces in vivo myotoxicity, moderates footpad edema, and causes in vitro neuromuscular blockade. Here, we describe the chemical modifications of specific amino acid residues (His, Tyr, Lys, and Trp), performed in PhTX-I, to study their effects on the structural, enzymatic, and pharmacological properties of this myotoxin. After chemical treatment, a single His, 4 Tyr, 7 Lys, and one Trp residues were modified. The secondary structure of the protein remained unchanged as measured by circular dichroism; however other results indicated the critical role played by Lys and Tyr residues in myotoxic, neurotoxic activities and mainly in the cytotoxicity displayed by PhTX-I. His residue and therefore catalytic activity of PhTX-I are relevant for edematogenic, neurotoxic, and myotoxic effects, but not for its cytotoxic activity. This dissociation observed between enzymatic activity and some pharmacological effects suggests that other molecular regions distinct from the catalytic site may also play a role in the toxic activities exerted by this myotoxin. Our observations supported the hypothesis that both the catalytic sites as the hypothetical pharmacological sites are relevant to the pharmacological profile of PhTX-I.

摘要

我们最近从 Porthidium hyoprora 蛇毒中分离出一种碱性 PLA2(PhTX-I)。该毒素具有很高的催化活性,能引起体内肌毒性、适度的足垫水肿,并导致体外神经肌肉阻滞。在这里,我们描述了对 PhTX-I 中特定氨基酸残基(His、Tyr、Lys 和 Trp)进行的化学修饰,以研究它们对这种肌毒素的结构、酶和药理学性质的影响。经过化学处理,一个 His、4 个 Tyr、7 个 Lys 和一个 Trp 残基被修饰。圆二色性测量表明,蛋白质的二级结构保持不变;然而,其他结果表明 Lys 和 Tyr 残基在肌毒性、神经毒性活性以及 PhTX-I 表现出的细胞毒性中起着关键作用。His 残基和因此 PhTX-I 的催化活性与水肿、神经毒性和肌毒性作用有关,但与细胞毒性作用无关。这种酶活性和一些药理学作用之间的分离表明,除了催化部位之外,其他分子区域也可能在这种肌毒素的毒性作用中发挥作用。我们的观察结果支持了这样的假设,即催化部位和假设的药理学部位都与 PhTX-I 的药理学特征有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e995/3591178/d2ffce8da81b/BMRI2013-103494.001.jpg

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