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Pentameric ligand-gated ion channels exhibit distinct transmembrane domain archetypes for folding/expression and function

机译:五聚体配体门控离子通道展现出独特的跨膜结构域原型可折叠/表达并起作用

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摘要

Although transmembrane helix-helix interactions must be strong enough to drive folding, they must still permit the inter-helix movements associated with conformational change. Interactions between the outermost M4 and adjacent M1 and M3 α-helices of pentameric ligand-gated ion channels have been implicated in folding and function. Here, we evaluate the role of different physical interactions at this interface in the function of two prokaryotic homologs, GLIC and ELIC. Strikingly, disruption of most interactions in GLIC lead to either a reduction or a complete loss of expression and/or function, while analogous disruptions in ELIC often lead to gains in function. Structural comparisons suggest that GLIC and ELIC represent distinct transmembrane domain archetypes. One archetype, exemplified by GLIC, the glycine and GABA receptors and the glutamate activated chloride channel, has extensive aromatic contacts that govern M4-M1/M3 interactions and that are essential for expression and function. The other archetype, exemplified by ELIC and both the nicotinic acetylcholine and serotonin receptors, has relatively few aromatic contacts that are detrimental to function. These archetypes likely have evolved different mechanisms to balance the need for strong M4 “binding” to M1/M3 to promote folding/expression, and the need for weaker interactions that allow for greater conformational flexibility.
机译:尽管跨膜螺旋-螺旋相互作用必须足够强以驱动折叠,但它们仍必须允许与构象变化相关的螺旋间运动。五聚体配体门控离子通道的最外层M4与相邻的M1和M3α螺旋之间的相互作用涉及折叠和功能。在这里,我们评估了在这个界面上不同物理相互作用在两个原核同源物GLIC和ELIC中的作用。令人惊讶的是,GLIC中大多数相互作用的破坏导致表达和/或功能的降低或完全丧失,而ELIC中类似的破坏通常导致功能的增强。结构比较表明,GLIC和ELIC代表不同的跨膜结构域原型。一种原型,例如GLIC,甘氨酸和GABA受体以及谷氨酸激活的氯离子通道,具有广泛的芳香族接触,可控制M4-M1 / M3相互作用,并且对于表达和功能至关重要。以ELIC以及烟碱乙酰胆碱和5-羟色胺受体为例的另一种原型具有相对较少的对功能有害的芳香族接触。这些原型可能已经演化出不同的机制,以平衡对M1 / M3的强烈“结合”以促进折叠/表达的需求以及对较弱相互作用的需求,以实现更大的构象灵活性。

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