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Two mutations linked to nocturnal frontal lobe epilepsy cause use-dependent potentiation of the nicotinic ACh response

机译:与夜间额叶癫痫相关的两个突变导致烟碱型ACh反应的使用依赖性增强

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摘要

class="enumerated" style="list-style-type:decimal">We constructed rat homologues (S252F and +L264) of two human α4 nicotinic mutations - α4(S248F) and α4(777ins3) - that have been linked to autosomal dominant nocturnal frontal lobe epilepsy (ADNFLE) and co-expressed them with wild-type rat β2 subunits in Xenopus oocytes.The S252F and +L264 mutations had three common effects on the ACh response. First, they caused use-dependent potentiation of the response during a train of brief 100 nm ACh pulses. Second, they delayed the rise times of the 5–15 nm (+L264) and 30 nm (S252F) ACh responses. Third, they reduced extracellular Ca2+-induced increases in the 30 μm ACh response.Beside these shared effects, the S252F mutation also reduced the channel burst duration measured from voltage-jump relaxations, enhanced steady-state desensitization and reduced the single-channel conductance. In contrast, the +L264 mutation prolonged the channel burst duration, did not affect desensitization and slightly increased single-channel conductance. Neither mutation affected the number of surface receptors measured by antibody binding but the S252F mutation reduced the maximum ACh response.The ACh concentration dependence of use-dependent potentiation and the delay in the rising phase of the mutant ACh response suggest that these effects are caused by a slow unblocking of the closed mutant receptors. Use-dependent potentiation of the mutant response during a series of high-frequency cholinergic inputs to the presynaptic terminal could trigger ADNFLE seizures by suddenly increasing nicotinic-mediated transmitter release.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 我们构建了两个人类α4烟碱突变的大鼠同源物(S252F和+ L264)-α4(S248F)和α4(777ins3)-已与常染色体显性夜夜额叶癫痫(ADNFLE)关联并与野生型共表达爪蟾卵母细胞中的大鼠β2亚基。 S252F和+ L264突变对ACh反应具有三种共同的作用。首先,它们在短暂的100 nm ACh脉冲序列期间引起了响应的使用依赖性增强。其次,他们延迟了5-15 nm(+ L264)和30 nm(S252F)ACh响应的上升时间。第三,它们减少了细胞外Ca 2 + 引起的30μmACh应答的增加。 除了这些共同的作用,S252F突变还减少了从电压-电压下测得的通道猝发持续时间。跳跃弛豫,增强的稳态脱敏并降低了单通道电导。相反,+ L264突变延长了通道猝发持续时间,不影响脱敏作用,并且单通道电导略有增加。两种突变都不会影响通过抗体结合测量的表面受体的数量,但是S252F突变会降低最大的ACh反应。 使用依赖型增强作用的ACh浓度依赖性和突变型ACh反应的上升阶段延迟提示这些作用是由封闭的突变受体的缓慢解锁引起的。在突触前末端的一系列高频胆碱能输入过程中,突变的应答依赖于用途的增强可能通过突然增加烟碱介导的递质释放而触发ADNFLE发作。

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