Structural Determinants for Ligand Accommodation in Voltage Sensors

Abigail García-Morales, Aylin López-Palestino, Daniel Balleza
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Abstract

After ligand binding, many ion channels undergo rearrangements at the voltage sensor domain (VSD) that often modulate their gating activity with important physiological repercussions. Since the VSD is dynamic, it is interesting to establish a correlation between the potential mobility of this element in terms of its intrinsic flexibility and its ability to accommodate several ligands by induced-fit mechanisms. We presume that these associations are not causal since the flexibility of the VSD could have an important impact on the ligand coupling event. Many significantly flexible ion channels show a general architecture and composition compatible with important conformational changes and capable of accommodating chemically diverse agonists. In this contribution, the structural bases of this subtle and probably unexpected relationship between the VSD flexibility and its influence during the dynamic coupling of the ligand are exposed. Thus, given its physiological relevance, the study of ion channel malfunction can be associated with ligand accommodation events to the VSD, which could depend on its local flexibility. This could contribute to a better understanding of the molecular bases of a variety of physiological disorders. In consequence, considering these effects during the protein/ligand interaction could be determinant to the rational design of novel drugs.
电压传感器中配体调节的结构决定因素
配体结合后,许多离子通道在电压传感器域(VSD)进行重排,这通常会调节它们的门控活动,并产生重要的生理影响。由于VSD是动态的,因此根据其固有的灵活性和通过诱导配合机制容纳多种配体的能力,建立该元件的潜在迁移率之间的相关性是很有趣的。我们假设这些关联不是因果关系,因为VSD的灵活性可能对配体偶联事件有重要影响。许多非常灵活的离子通道显示出与重要构象变化兼容的一般结构和组成,并能够容纳化学上不同的激动剂。在这一贡献中,揭示了这种微妙的和可能意想不到的VSD灵活性及其在配体动态耦合期间的影响之间的关系的结构基础。因此,鉴于其生理相关性,离子通道功能障碍的研究可能与配体对VSD的调节事件有关,这可能取决于其局部灵活性。这有助于更好地理解各种生理障碍的分子基础。因此,在蛋白质/配体相互作用过程中考虑这些影响可能是新药合理设计的决定性因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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