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两种蝎 Kv1.3 通道阻滞剂和海葵 S. haddoni 的基因组结构及其嵌合肽作为新型阻滞剂的构建。

Genomic Structure of Two Kv1.3 Channel Blockers from Scorpion Mesobuthus eupeus and Sea Anemone Stichodactyla haddoni and Construction of their Chimeric Peptide as a Novel Blocker.

机构信息

Department of Genetics, School of Science, Shahrekord University, Rahbar Blvd, P O Box 115, 881 863 4141, Shahrekord, Iran.

Department of Marine Biology, Hormozgan University, Bandar Abbas, Iran.

出版信息

Biochem Genet. 2022 Apr;60(2):504-526. doi: 10.1007/s10528-021-10109-z. Epub 2021 Jul 20.

DOI:10.1007/s10528-021-10109-z
PMID:34286408
Abstract

Different toxins acting on Kv1.3 channel have been isolated from animal venom. MeuKTX toxin from Mesobuthus eupeus phillipsi scorpion and shtx-k toxin from Stichodactyla haddoni sea anemone have been identified as two effective Kv1.3 channel blockers. In this work, we characterized the genomic organization of both toxins. MeuKTX gene contains one intron and two exons, similar to the most scorpion toxins. There are a few reports of genomic structure of sea anemone toxins acting on Kv channels. The sequence encoding mature peptide of shtx-k was located in an exon separated by an intron from the coding exon of the propeptide and signal region. In order to make a peptide with more affinity for Kv1.3 channel and greater stability, the shtx-k/ MeuKTX chimeric peptide was designed and constructed using splicing by overlap extension-PCR (SOE-PCR) method. MeuKTX, shtx-k, and shtx-k/MeuKTX were cloned and the expression of the soluble proteins in E. coli was determined. Molecular docking studies indicated more inhibitory effect of shtx-k/MeuKTX on Kv1.3 channel compared to shtx-k and MeuKTX toxins. Key amino acids binding channel from both toxins, also involved in interaction of chimeric peptide with channel. Our results showed that the fusion peptide, shtx-k/MeuKTX could be an effective agent to target Kv1.3 channel.

摘要

不同的毒素作用于 Kv1.3 通道已从动物毒液中分离出来。来自 Mesobuthus eupeus phillipsi 蝎子的 MeuKTX 毒素和来自 Stichodactyla haddoni 海葵的 shtx-k 毒素已被鉴定为两种有效的 Kv1.3 通道阻滞剂。在这项工作中,我们对这两种毒素的基因组结构进行了表征。MeuKTX 基因包含一个内含子和两个外显子,与大多数蝎子毒素相似。有一些关于作用于 Kv 通道的海葵毒素基因组结构的报道。shtx-k 的成熟肽编码序列位于一个外显子中,该外显子通过内含子与前肽和信号区域的编码外显子分开。为了使肽对 Kv1.3 通道具有更高的亲和力和更大的稳定性,使用拼接重叠延伸-PCR(SOE-PCR)方法设计并构建了 shtx-k/MeuKTX 嵌合肽。克隆了 MeuKTX、shtx-k 和 shtx-k/MeuKTX,并确定了它们在大肠杆菌中的可溶性蛋白表达。分子对接研究表明,与 shtx-k 和 MeuKTX 毒素相比,shtx-k/MeuKTX 对 Kv1.3 通道具有更强的抑制作用。结合通道的两种毒素的关键氨基酸,也参与嵌合肽与通道的相互作用。我们的结果表明,融合肽 shtx-k/MeuKTX 可能是一种有效的靶向 Kv1.3 通道的药物。

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