心脏电压门钠离子通道 β1 和 β1B 的新焦点:治疗和了解心律失常的新靶点?

IF 5.6 2区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Heart rhythm Pub Date : 2025-01-01 Epub Date: 2024-06-21 DOI:10.1016/j.hrthm.2024.06.029
Zachary J Williams, Laura Beth Payne, Xiaobo Wu, Robert G Gourdie
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引用次数: 0

摘要

电压门控钠通道(VGSC)是一种跨膜蛋白复合物,对神经和肌肉纤维中动作电位的产生和传播至关重要。典型的 VGSC 通常被认为是由两类跨膜亚基--一个α亚基(形成孔)和两个β亚基(不形成孔)--形成的异三聚体复合物。NaV1.5 是哺乳动物心室的主要钠通道 α-亚基,其他 α-亚基的含量较低,包括 NaV1.6。共有四个 β 亚基,即 β1-β4 ,由 SCN1B-SCN4B 四个基因编码,每个基因都在心脏组织中表达。最近的研究表明,除了在通道门控和贩运方面的任务外,Scn1b 的产物还可能在心脏动作电位传导和细胞内信号传导方面发挥新的作用。这包括有证据表明,β 亚基胞外氨基末端结构域可促进闰盘中的粘附相互作用,其羧基末端区域是调控膜内蛋白水解(RIP)信号通路的底物--β1 RIP 产生的羧基末端肽被运输到细胞核,并改变包括 NaV1.5 在内的各种基因的转录。除 β1 外,Scn1b 基因还编码另一种剪接变体 β1B,它含有与 β1 相同的细胞外粘附结构域,但具有独特的羧基末端。虽然人们普遍认为β1B是一种分泌型变体,但有证据表明,当它与NaV1.5共同表达时,β1B会维持在细胞膜上,这表明这种未被充分研究的蛋白质可能具有独特的作用。在这篇综述中,我们将重点讨论目前已知的 Scn1b 在心脏中编码的两种 β 亚基变体,尤其关注最近的发现以及这些新信息提出的问题。我们还探讨了一些数据,这些数据表明 β1 和 β1B 可能是新型抗心律失常疗法的诱人靶点。
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New focus on cardiac voltage-gated sodium channel β1 and β1B: Novel targets for treating and understanding arrhythmias?

Voltage-gated sodium channels (VGSCs) are transmembrane protein complexes that are vital to the generation and propagation of action potentials in nerve and muscle fibers. The canonical VGSC is generally conceived as a heterotrimeric complex formed by 2 classes of membrane-spanning subunit: an α-subunit (pore forming) and 2 β-subunits (non-pore forming). NaV1.5 is the main sodium channel α-subunit of mammalian ventricle, with lower amounts of other α-subunits, including NaV1.6, being present. There are 4 β-subunits (β1-β4) encoded by 4 genes (SCN1B-SCN4B), each of which is expressed in cardiac tissues. Recent studies suggest that in addition to assignments in channel gating and trafficking, products of Scn1b may have novel roles in conduction of action potential in the heart and intracellular signaling. This includes evidence that the β-subunit extracellular amino-terminal domain facilitates adhesive interactions in intercalated discs and that its carboxyl-terminal region is a substrate for a regulated intramembrane proteolysis (RIP) signaling pathway, with a carboxyl-terminal peptide generated by β1 RIP trafficked to the nucleus and altering transcription of various genes, including NaV1.5. In addition to β1, the Scn1b gene encodes for an alternative splice variant, β1B, which contains an identical extracellular adhesion domain to β1 but has a unique carboxyl-terminus. Although β1B is generally understood to be a secreted variant, evidence indicates that when co-expressed with NaV1.5, it is maintained at the cell membrane, suggesting potential unique roles for this understudied protein. In this review, we focus on what is known of the 2 β-subunit variants encoded by Scn1b in heart, with particular focus on recent findings and the questions raised by this new information. We also explore data that indicate β1 and β1B may be attractive targets for novel antiarrhythmic therapeutics.

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来源期刊
Heart rhythm
Heart rhythm 医学-心血管系统
CiteScore
10.50
自引率
5.50%
发文量
1465
审稿时长
24 days
期刊介绍: HeartRhythm, the official Journal of the Heart Rhythm Society and the Cardiac Electrophysiology Society, is a unique journal for fundamental discovery and clinical applicability. HeartRhythm integrates the entire cardiac electrophysiology (EP) community from basic and clinical academic researchers, private practitioners, engineers, allied professionals, industry, and trainees, all of whom are vital and interdependent members of our EP community. The Heart Rhythm Society is the international leader in science, education, and advocacy for cardiac arrhythmia professionals and patients, and the primary information resource on heart rhythm disorders. Its mission is to improve the care of patients by promoting research, education, and optimal health care policies and standards.
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