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首页> 外文期刊>American Journal of Physiology >The anchoring protein SAP97 retains Kv1.5 channels in the plasma membrane of cardiac myocytes
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The anchoring protein SAP97 retains Kv1.5 channels in the plasma membrane of cardiac myocytes

机译:锚定蛋白SAP97在心肌细胞的质膜中保留Kv1.5通道

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Membrane-associated guanylate kinase proteins (MAGUKs) are important determinants of localization and organization of ion channels into specific plasma membrane domains. However, their exact role in channel function and cardiac excitability is not known. We examined the effect of synapse-associated protein 97 (SAP97), a MAGUK abundantly expressed in the heart, on the function and localization of Kv1.5 subunits in cardiac myocytes. Recombinant SAP97 or Kv1.5 subunits tagged with green fluorescent protein (GFP) were overexpressedin rat neonatal cardiac myocytes and in Chinese hamster ovary (CHO) cells from adenoviral or plasmidic vectors. Immunocytochemistry,fluorescence recovery after photobleaching, and patchclamptechniques were used to study the effects of SAP97 on the localization, mobility, and function of Kv1.5 subunits. Adenovirus-mediated SAP97 overexpression in cardiac myocytes resulted in the clustering of endogenous Kv1.5 subunits at myocyte-myocyte contacts and an increase in both the maintained component of the outward K~+ current, I_(Kur) (5.64 +- 0.57 pA/pF in SAP97 myocytes vs. 3.23 +-0.43 pA/pF in controls) and the number of 4-aminopyridine-sensitive potassium channels in cell-attached membrane patches. In live myocytes, GFP-Kv1.5 subunits were mobile and organized in clusters at the basal plasma membrane, whereas SAP97 overexpression reduced their mobility. In CHO cells, Kv1.5 channels were diffusely distributed throughout the cell body and freely mobile. When coexpressed with SAP97, Kv subunits were organized in plaquelike clusters and poorly mobile. In conclusion, SAP97 regulates the K~+ current in cardiac myocytes by retaining and immobilizing Kv1.5 subunits in the plasma membrane. This new regulatory mechanism may contribute to the targeting of Kv channels in cardiac myocytes.
机译:膜相关鸟苷酸激酶蛋白(MAGUKs)是离子通道在特定质膜结构域中定位和组织的重要决定因素。但是,它们在通道功能和心脏兴奋性中的确切作用尚不清楚。我们检查了突触相关蛋白97(SAP97),一种在心脏中大量表达的MAGUK,对心肌细胞中Kv1.5亚基的功能和定位的影响。带有绿色荧光蛋白(GFP)的重组SAP97或Kv1.5亚基在腺病毒或质粒载体的大鼠新生心肌细胞和中国仓鼠卵巢(CHO)细胞中过表达。免疫细胞化学,光漂白后的荧光恢复和膜片钳技术用于研究SAP97对Kv1.5亚基的定位,迁移和功能的影响。腺病毒介导的SAP97在心肌细胞中的过表达导致在心肌细胞与肌细胞接触处内源性Kv1.5亚基聚集,并且向外K〜+电流I_(Kur)的维持分量增加(5.64 +-0.57 pA / SAP97肌细胞中的pF对比对照组中的3.23 + -0.43 pA / pF)和细胞附着的膜片中4-氨基吡啶敏感性钾通道的数量。在活的心肌细胞中,GFP-Kv1.5亚基是可移动的,并在基底质膜上成簇地组织,而SAP97过表达则降低了它们的迁移率。在CHO细胞中,Kv1.5通道散布在整个细胞体内,并可以自由移动。当与SAP97共表达时,Kv亚基被组织成斑块状且流动性差。总之,SAP97通过保留和固定质膜中的Kv1.5亚基来调节心肌细胞中的K〜+电流。这种新的调节机制可能有助于靶向心肌细胞中的Kv通道。

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