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对致病性家族性偏瘫性偏头痛 1 型 S218L 突变对 Ca2.1 P/Q 型通道门控的剪接特异性功能影响的结构分析。

A structural analysis of the splice-specific functional impact of the pathogenic familial hemiplegic migraine type 1 S218L mutation on Ca2.1 P/Q-type channel gating.

机构信息

Michael Smith Laboratories, University of British Columbia, 2185 East Mall, Vancouver, BC, V6T 1Z4, Canada.

Djavad Mowafaghian Centre for Brain Health, University of British Columbia, 2215 Wesbrook Mall, Vancouver, BC, V6T 1Z3, Canada.

出版信息

Mol Brain. 2024 Nov 20;17(1):82. doi: 10.1186/s13041-024-01152-z.

Abstract

P/Q-type (Ca2.1) calcium channels mediate Ca influx essential for neuronal excitability and synaptic transmission. The CACNA1A gene, encoding the Ca2.1 pore forming subunit, is highly expressed throughout the mammalian central nervous system. Alternative splicing of Ca2.1 pre-mRNA generates diverse channel isoforms with distinct biophysical properties and drug affinities, which are differentially expressed in nerve tissues. Splicing variants can also affect channel function under pathological conditions although their phenotypic implication concerning inherited neurological disorders linked to CACNA1A mutations remains unknown. Here, we quantified the expression of Ca2.1 exon 24 (e24) spliced transcripts in human nervous system samples, finding different levels of expression within discrete regions. The corresponding Ca2.1 variants, differing by the presence (+) or absence (Δ) of Ser-Ser-Thr-Arg residues (SSTR) in the domain III S3-S4 linker, were functionally characterized using patch clamp recordings. Further, the + /ΔSSTR isoforms were used to demonstrate the differential impact of the Familial Hemiplegic Migraine Type 1 (FHM-1) S218L mutation, located in the domain I S4-S5 linker, on the molecular structure and electrophysiological properties of Ca2.1 isoforms. S218L has a prominent effect on the voltage-dependence of activation of +SSTR channels when compared to ΔSSTR, indicating a differential effect of the mutation depending on splice-variant context. Structural modeling based upon Cav2.1 cryo-EM data provided further insight reflecting independent contributions of amino acids in distant regions of the channel on gating properties. Our modelling indicates that by increasing hydrophobicity the Leu218 mutation contributes to stabilizing a structural conformation in which the domain I S4-S5 linker is oriented alongside the inner plasma membrane, similar to that occurring when S4 is translocated upon activation.The SSTR insertion appears to exert an influence in the local electric field of domain III due to an change in the distribution of positively charged regions surrounding the voltage sensing domain, which we hypothesize impacts its movement during the transition to the open state. In summary, we reveal molecular changes correlated with distinct functional effects provoked by S218L FHM-1 mutation in hCa2.1 splice isoforms whose differential expression could impact the manifestation of the neurological disorder.

摘要

P/Q 型(Ca2.1)钙通道介导 Ca2+内流,这对神经元兴奋性和突触传递至关重要。CACNA1A 基因编码 Ca2.1 孔形成亚基,在哺乳动物中枢神经系统中高度表达。Ca2.1 前体 mRNA 的选择性剪接产生具有不同生物物理特性和药物亲和力的多种通道同工型,这些同工型在神经组织中表达不同。剪接变体在病理条件下也可以影响通道功能,尽管它们与 CACNA1A 突变相关的遗传性神经疾病的表型意义尚不清楚。在这里,我们定量分析了人类神经系统样本中 Ca2.1 外显子 24(e24)剪接转录本的表达,发现不同区域的表达水平不同。相应的 Ca2.1 变体,在 III 域 S3-S4 接头处存在 (+) 或不存在 (Δ) Ser-Ser-Thr-Arg 残基(SSTR),使用膜片钳记录对其功能进行了表征。此外,使用 + /ΔSSTR 同工型来证明家族性偏瘫偏头痛 1 型(FHM-1)S218L 突变位于 I 域 S4-S5 接头对 Ca2.1 同工型的分子结构和电生理特性的差异影响。与 ΔSSTR 相比,S218L 对 +SSTR 通道激活的电压依赖性有显著影响,表明突变的影响取决于剪接变体的上下文。基于 Cav2.1 冷冻电镜数据的结构建模提供了进一步的见解,反映了通道中不同区域的氨基酸对门控特性的独立贡献。我们的模型表明,通过增加疏水性,Leu218 突变有助于稳定一种构象,其中 I 域 S4-S5 接头与内质网膜平行取向,类似于 S4 在激活时易位时发生的情况。SSTR 插入似乎通过改变围绕电压传感域的带正电荷区域的分布,对 III 域的局部电场产生影响,我们假设这会影响其在向开放状态过渡时的运动。总之,我们揭示了与 hCa2.1 剪接同工型中 S218L FHM-1 突变引起的不同功能效应相关的分子变化,其差异表达可能会影响神经疾病的表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1f4/11580629/69da6144c990/13041_2024_1152_Fig1_HTML.jpg

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