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Structure-Function Elucidation of a New α-Conotoxin MilIA from Conus milneedwardsi

机译:新的α-芋螺毒素MilIA的结构功能解析

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摘要

The a-Conotoxins are peptide toxins that are found in the venom of marine cone snails and they are potent antagonists of various subtypes of nicotinic acetylcholine receptors (nAChRs). Because nAChRs have an important role in regulating transmitter release, cell excitability, and neuronal integration, nAChR dysfunctions have been implicated in a variety of severe pathologies. We describe the isolation and characterization of α-conotoxin MilIA, the first conopeptide from the venom of Conus milneedwardsi. The peptide was characterized by electrophysiological screening against several types of cloned nAChRs that were expressed in Xenopus laevis oocytes. MilIA, which is a member of the α3/5 family, is an antagonist of muscle type nAChRs with a high selectivity for muscle versus neuronal subtype nAChRs. Several analogues were designed and investigated for their activity in order to determine the key epitopes of MilIA. Native MilIA and analogues both showed activity at the fetal muscle type nAChR. Two single mutations (Met9 and Asn10) allowed for MilIA to strongly discriminate between the two types of muscle nAChRs. Moreover, one analogue, MilIA [∆1,M2R, M9G, N10K, H11K], displayed a remarkable enhanced potency when compared to native peptide. The key residues that are responsible for switching between muscle and neuronal nAChRs preference were elucidated. Interestingly, the same analogue showed a preference for α9α10 nAChRs among the neuronal types.
机译:α-芋螺毒素是在海洋锥蜗牛的毒液中发现的肽毒素,是烟碱样乙酰胆碱受体(nAChRs)各种亚型的有效拮抗剂。由于nAChR在调节递质释放,细胞兴奋性和神经元整合中起着重要作用,因此nAChR功能障碍已牵涉到多种严重的疾病中。我们描述了分离和表征的α-芋螺毒素MilIA,从Conus milneedwardsi的毒液中的第一个芋螺肽。通过针对在非洲爪蟾卵母细胞中表达的几种类型的克隆nAChR进行电生理筛选来表征该肽。 MilIA是α3/ 5家族的成员,是肌肉型nAChR的拮抗剂,对肌肉对神经元亚型nAChR的选择性高。为了确定MilIA的关键表位,设计并研究了几种类似物的活性。天然MilIA和类似物都显示出对胎儿肌肉nAChR的活性。两个单突变(Met9和Asn10)使MilIA能够强烈地区分两种类型的肌肉nAChR。此外,与天然肽相比,一种类似物MilIA [∆1,M2R,M9G,N10K,H11K]显示出显着的增强效力。阐明了负责在肌肉和神经元nAChRs偏好之间切换的关键残基。有趣的是,同一类似物在神经元类型中显示出对α9α10nAChRs的偏爱。

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