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首页> 外文期刊>Peptides: An International Journal >Effect of eel calcitonin glycosylation on incorporation and channel formation in planar phospholipid membranes.
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Effect of eel calcitonin glycosylation on incorporation and channel formation in planar phospholipid membranes.

机译:鳗cal降钙素糖基化对平面磷脂膜掺入和通道形成的影响。

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摘要

Previous studies have shown that different calcitonins interact with planar lipid membranes to form ion channels. In this study, glycosylation of eel calcitonin (eCt) at different positions (Ct3-GlcNAc, Ct14-GlcNAc, Ct20-GlcNAc, Ct26-GlcNAc) is shown to preserve molecular structure and slightly change the energy of incorporation and channel formation in planar lipid bilayers made up of palmitoyl-oleoyl-phosphatidylcholine:dioleoyl phosphatidyl-glycerol (85:15, w:w). The voltage needed to form channels decreased as the attached carbohydrate moved toward the C-terminal (eCt = Ct3-GlcNAc > Ct14-GlcNAc = Ct20-GlcNAc > Ct26-GlcNAc). Interestingly, all the Cts tested maintain the characteristic voltage-conductance dependence found for other Cts, the only channel properties modified concern ion selectivity, that shift toward anion selectivity (eCt = 0.97, Ct3-GlcNAc = 0.49, Ct14-GlcNAc = 0.41, Ct20-GlcNAc = 0.36, Ct26-GlcNAc = 0.47). These aspects would be useful in managing peptide properties for biotechnological and therapeutic applications considering the physiological nature of this peptide.
机译:先前的研究表明,不同的降钙素与平面脂质膜相互作用形成离子通道。在这项研究中,鳗cal降钙素(eCt)在不同位置(Ct3-GlcNAc,Ct14-GlcNAc,Ct20-GlcNAc,Ct26-GlcNAc)的糖基化作用可保留分子结构,并略微改变平面脂质中结合和通道形成的能量由棕榈酰基-油酰基-磷脂酰胆碱:二油酰基磷脂酰-甘油组成的双层(85:15,w:w)。随着附着的碳水化合物向C端移动,形成通道所需的电压降低(eCt = Ct3-GlcNAc> Ct14-GlcNAc = Ct20-GlcNAc> Ct26-GlcNAc)。有趣的是,所有测试的Cts都保持了其他Cts的特征电压电导依赖性,这是唯一改变了离子选择性的通道特性,其离子选择性向阴离子选择性转移(eCt = 0.97,Ct3-GlcNAc = 0.49,Ct14-GlcNAc = 0.41,Ct20 -GlcNAc = 0.36,Ct26-GlcNAc = 0.47)。考虑到该肽的生理特性,这些方面对于管理用于生物技术和治疗应用的肽特性将是有用的。

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