首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structural and biophysical properties of a synthetic channel-forming peptide: Designing a clinically relevant anion selective pore
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Structural and biophysical properties of a synthetic channel-forming peptide: Designing a clinically relevant anion selective pore

机译:合成通道形成肽的结构和生物物理特性:设计临床相关的阴离子选择性孔

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摘要

The design, synthesis, modeling and in vitro testing of channel-forming peptides derived from the cys-loop superfamily of ligand-gated ion channels are part of an ongoing research focus. Over 300 different sequences have been prepared based on the M2 transmembrane segment of the spinal cord glycine receptor α-subunit. A number of these sequences are water-soluble monomers that readily insert into biological membranes where they undergo supramolecular assembly, yielding channels with a range of selectivities and conductances. Selection of a sequence for further modifications to yield an optimal lead compound came down to a few key biophysical properties: low solution concentrations that yield channel activity, greater ensemble conductance, and enhanced ion selectivity. The sequence NK 4-M2GlyR T19R, S22W (KKKKPARVGLGITTVLTMRTQW) addressed these criteria. The structure of this peptide has been analyzed by solution NMR as a monomer in detergent micelles, simulated as five-helix bundles in a membrane environment, modified by cysteine-scanning and studied for insertion efficiency in liposomes of selected lipid compositions. Taken together, these results define the structural and key biophysical properties of this sequence in a membrane. This model provides an initial scaffold from which rational substitutions can be proposed and tested to modulate anion selectivity.
机译:配体门控离子通道的cys环超家族衍生的通道形成肽的设计,合成,建模和体外测试是正在进行的研究重点的一部分。基于脊髓甘氨酸受体α-亚基的M2跨膜片段,已经制备了300多种不同的序列。这些序列中的许多序列是水溶性单体,它们容易插入生物膜中并在其中进行超分子组装,从而产生具有一定选择性和电导率的通道。选择进一步修饰以产生最佳前导化合物的序列归结为一些关键的生物物理特性:溶液浓度低,可产生通道活性,更大的整体电导率和增强的离子选择性。序列NK 4-M2GlyR T19R,S22W(KKKKPARVGLGITTVLTMRTQW)满足了这些标准。该肽的结构已通过溶液NMR作为去污剂胶束中的单体进行了分析,在膜环境中模拟为五螺旋束,通过半胱氨酸扫描进行了修饰,并研究了在所选脂质组合物中脂质体的插入效率。总而言之,这些结果定义了该序列在膜中的结构和关键的生物物理特性。该模型提供了一个初始支架,可以从该支架中提出合理的取代基并进行测试以调节阴离子的选择性。

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