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海葵钾通道阻断剂 ShK 来源于海葵 Anemonia sulcata 的最小同源物的结构、折叠和稳定性。

Structure, folding and stability of a minimal homologue from Anemonia sulcata of the sea anemone potassium channel blocker ShK.

机构信息

Medicinal Chemistry, Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, VIC 3052, Australia.

NMR Research Centre, Indian Institute of Science, Bangalore 560012, India.

出版信息

Peptides. 2018 Jan;99:169-178. doi: 10.1016/j.peptides.2017.10.001. Epub 2017 Oct 6.

DOI:10.1016/j.peptides.2017.10.001
PMID:28993277
Abstract

Peptide toxins elaborated by sea anemones target various ion-channel sub-types. Recent transcriptomic studies of sea anemones have identified several novel candidate peptides, some of which have cysteine frameworks identical to those of previously reported sequences. One such peptide is AsK132958, which was identified in a transcriptomic study of Anemonia sulcata and has a cysteine framework similar to that of ShK from Stichodactyla helianthus, but is six amino acid residues shorter. We have determined the solution structure of this novel peptide using NMR spectroscopy. The disulfide connectivities and structural scaffold of AsK132958 are very similar to those of ShK but the structure is more constrained. Toxicity assays were performed using grass shrimp (Palaemonetes sp) and Artemia nauplii, and patch-clamp electrophysiology assays were performed to assess the activity of AsK132958 against a range of voltage-gated potassium (K) channels. AsK132958 showed no activity against grass shrimp, Artemia nauplii, or any of the K channels tested, owing partly to the absence of a functional Lys-Tyr dyad. Three AsK132958 analogues, each containing a Tyr in the vicinity of Lys19, were therefore generated in an effort to restore binding, but none showed activity against any of K channels tested. However, AsK132958 and its analogues are less susceptible to proteolysis than that of ShK. Our structure suggests that Lys19, which might be expected to occupy the pore of the channel, is not sufficiently accessible for binding, and therefore that AsK132958 must have a distinct functional role that does not involve K channels.

摘要

海葵产生的肽毒素靶向各种离子通道亚型。最近对海葵的转录组研究鉴定出了几种新的候选肽,其中一些具有与先前报道的序列相同的半胱氨酸框架。一种这样的肽是 AsK132958,它是在对 Anemonia sulcata 的转录组研究中发现的,其半胱氨酸框架与来自 Stichodactyla helianthus 的 ShK 相似,但短了 6 个氨基酸残基。我们使用 NMR 光谱法确定了这种新型肽的溶液结构。AsK132958 的二硫键连接和结构支架与 ShK 非常相似,但结构更受限制。使用草虾(Palaemonetes sp)和卤虫无节幼体进行了毒性测定实验,并进行了膜片钳电生理学测定,以评估 AsK132958 对一系列电压门控钾 (K) 通道的活性。AsK132958 对草虾、卤虫无节幼体或测试的任何 K 通道均无活性,部分原因是缺乏功能的 Lys-Tyr 二联体。因此,生成了 3 种 AsK132958 类似物,每种类似物都在 Lys19 附近含有 Tyr,以努力恢复结合,但没有一种类似物对测试的任何 K 通道表现出活性。然而,AsK132958 及其类似物比 ShK 更不易被蛋白水解。我们的结构表明,Lys19 可能占据通道的孔,但结合不够,因此 AsK132958 必须具有不涉及 K 通道的独特功能作用。

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