首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >A new structurally atypical bradykinin-potentiating peptide isolated from Crotalus durissus cascavella venom (South American rattlesnake)
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A new structurally atypical bradykinin-potentiating peptide isolated from Crotalus durissus cascavella venom (South American rattlesnake)

机译:从猪响尾蛇毒液(南美响尾蛇)分离的一种新的结构非典型的缓激肽增强肽。

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摘要

Venom glands of some snakes synthesize bradykinin-potentiating peptides (BPP's) which increase bradykinin-induced hypotensive effect and decrease angiotensin I vasopressor effect by angiotensin-converting enzyme (ACE) inhibition. The present study shows a new BPP (BPP-Cdc) isolated from Crotalus durissus cascavella venom: Pro-Asn-Leu-Pro-Asn-Tyr-Leu-Gly-Ile-Pro-Pro. Although BPP-Cdc presents the classical sequence IPP in the C-terminus, it has a completely atypical N-terminal sequence, which, shows very low homology with all other BPPs isolated to date. The pharmacological effects of BPP-Cdc were compared to BBP9a from Bothrops jararaca and captopril. BPP-Cdc (1 mu M) significantly increased BK-induced contractions (BK; 1 mu M) on the guinea pig ileum by 267.8% and decreased angiotensin I-induced contractions (AngI; 10 nM) by 62.4% and these effects were not significantly different from those of BPP9a (1 mu M) or captopril (200 nM). Experiments with 4-week hypertensive 2K-1C rats show that the vasopressor effect of AngI (10 ng) was decreased by 50 mu g BPP-Cdc (69.7%), and this result was similar to that obtained with 50 mu g BPP9a (69.8%). However, the action duration of BPP-Cdc (60 min) was 2 times greater than that of BPP-9a (30 min). On the other hand, the hypotensive effect of BK (250 ng) was significantly increased by 176.6% after BPP-Cdc (50 mu g) administration, value 2.5 times greater than that obtained with BPP9a administered at the same doses (71.4%). In addition, the duration of the action of BPP-Cdc (120 min) was also at least 4 times greater than that of BPP-9a (30 min). Taken together, these results suggest that BPP-Cdc presents more selective action on arterial blood system than BPP9a. Besides the inhibition of ACE, it may present other mechanisms of action yet to be elucidated. (C) 2014 Elsevier Ltd. All rights reserved.
机译:一些蛇的毒腺合成缓激肽增强肽(BPP),通过血管紧张素转换酶(ACE)抑制作用来增加缓激肽诱导的降压作用并降低血管紧张素I血管升压作用。本研究显示了从猪屎豆属毒液中分离出的一种新的BPP(BPP-Cdc):Pro-Asn-Leu-Pro-Asn-Tyr-Leu-Gly-Ile-Pro-Pro。尽管BPP-Cdc在C端显示了经典序列IPP,但它具有完全非典型的N端序列,与迄今分离的所有其他BPP同源性很低。将BPP-Cdc的药理作用与来自Bothrops jararaca和captopril的BBP9a进行了比较。 BPP-Cdc(1μM)显着增加了BK诱导的豚鼠回肠收缩(BK; 1μM)267.8%,并使血管紧张素I诱导的收缩(AngI; 10 nM)降低62.4%,但这些作用没有与BPP9a(1μM)或卡托普利(200 nM)的显着不同。用4周高血压2K-1C大鼠进行的实验表明,AngI(10 ng)的血管升压作用降低了50μg BPP-Cdc(69.7%),该结果类似于50μg BPP9a(69.8) %)。但是,BPP-Cdc的作用时间(60分钟)是BPP-9a的作用时间(30分钟)的2倍。另一方面,BPP-Cdc(50μg)给药后,BK(250 ng)的降压作用显着提高了176.6%,是相同剂量下(71.4%)BPP9a的降压作用的2.5倍。另外,BPP-Cdc(120分钟)的作用时间也至少是BPP-9a(30分钟)的4倍。综上所述,这些结果表明,BPP-Cdc比BPP9a对动脉血液系统的选择性更高。除了抑制ACE以外,它还可能具有其他机制尚待阐明。 (C)2014 Elsevier Ltd.保留所有权利。

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