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2
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3
K4.3 Expression Modulates Na1.5 Sodium Current.K4.3表达调节Na1.5钠电流。
Front Physiol. 2018 Mar 12;9:178. doi: 10.3389/fphys.2018.00178. eCollection 2018.
4
Cardiac Kir2.1 and Na1.5 Channels Traffic Together to the Sarcolemma to Control Excitability.心脏 Kir2.1 和 Na1.5 通道共同转运至肌浆网以控制兴奋性。
Circ Res. 2018 May 25;122(11):1501-1516. doi: 10.1161/CIRCRESAHA.117.311872. Epub 2018 Mar 7.
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Fate of estrogens in a pilot-scale step-feed anoxic/oxic wastewater treatment system controlling by nitrogen and phosphorus removal.在一个通过氮磷去除控制的中试级分步进料缺氧/好氧废水处理系统中雌激素的命运。
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8
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9
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10
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定义 αII spectrin 在心脏功能中的新机械作用。

Defining new mechanistic roles for αII spectrin in cardiac function.

机构信息

From the Dorothy M. Davis Heart and Lung Research Institute and Frick Center for Heart Failure and Arrhythmia.

Medical Scientist Training Program.

出版信息

J Biol Chem. 2019 Jun 14;294(24):9576-9591. doi: 10.1074/jbc.RA119.007714. Epub 2019 May 7.

DOI:10.1074/jbc.RA119.007714
PMID:31064843
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6579463/
Abstract

Spectrins are cytoskeletal proteins essential for membrane biogenesis and regulation and serve critical roles in protein targeting and cellular signaling. αII spectrin () is one of two α spectrin genes and αII spectrin dysfunction is linked to alterations in axon initial segment formation, cortical lamination, and neuronal excitability. Furthermore, human αII spectrin loss-of-function variants cause neurological disease. As global αII spectrin knockout mice are embryonic lethal, the roles of αII spectrin in adult heart are unknown and untested. Here, based on pronounced alterations in αII spectrin regulation in human heart failure we tested the roles of αII spectrin in the vertebrate heart. We created a mouse model of cardiomyocyte-selective αII spectrin-deficiency (cKO) and used this model to define the roles of αII spectrin in cardiac function. αII spectrin cKO mice displayed significant structural, cellular, and electrical phenotypes that resulted in accelerated structural remodeling, fibrosis, arrhythmia, and mortality in response to stress. At the molecular level, we demonstrate that αII spectrin plays a nodal role for global cardiac spectrin regulation, as αII spectrin cKO hearts exhibited remodeling of αI spectrin and altered β-spectrin expression and localization. At the cellular level, αII spectrin deficiency resulted in altered expression, targeting, and regulation of cardiac ion channels Na1.5 and K4.3. In summary, our findings define critical and unexpected roles for the multifunctional αII spectrin protein in the heart. Furthermore, our work provides a new animal model to study the roles of αII spectrin in the cardiomyocyte.

摘要

spectrins 是细胞骨架蛋白,对膜的发生和调节至关重要,在蛋白质靶向和细胞信号转导中发挥关键作用。αII spectrin()是两个α spectrin 基因之一,αII spectrin 功能障碍与轴突起始段形成、皮质分层和神经元兴奋性的改变有关。此外,人类αII spectrin 功能丧失变异导致神经疾病。由于全球αII spectrin 敲除小鼠是胚胎致死的,αII spectrin 在成年心脏中的作用尚不清楚,也未经过测试。在这里,我们基于人类心力衰竭中αII spectrin 调节的明显改变,测试了αII spectrin 在脊椎动物心脏中的作用。我们创建了一种心肌细胞特异性αII spectrin 缺失(cKO)的小鼠模型,并使用该模型来定义αII spectrin 在心脏功能中的作用。αII spectrin cKO 小鼠表现出显著的结构、细胞和电表型,导致在应激时加速结构重塑、纤维化、心律失常和死亡率。在分子水平上,我们证明αII spectrin 对心脏整体 spectrin 调节起着节点作用,因为αII spectrin cKO 心脏表现出αI spectrin 的重塑以及β-spectrin 表达和定位的改变。在细胞水平上,αII spectrin 缺失导致心脏离子通道 Na1.5 和 K4.3 的表达、靶向和调节发生改变。总之,我们的研究结果定义了多功能αII spectrin 蛋白在心脏中的关键和意外作用。此外,我们的工作提供了一种新的动物模型来研究αII spectrin 在心肌细胞中的作用。