首页> 外文期刊>The Korean Journal of Physiology & Pharmacology >Analysis of interaction between intracellular spermine and transient receptor potential canonical 4 channel: multiple candidate sites of negatively charged amino acids for the inward rectification of transient receptor potential canonical 4
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Analysis of interaction between intracellular spermine and transient receptor potential canonical 4 channel: multiple candidate sites of negatively charged amino acids for the inward rectification of transient receptor potential canonical 4

机译:细胞内精度和瞬态受体潜在规范4通道的相互作用分析:带负电荷氨基酸的多个候选位点,用于瞬态受体潜在典型透明度的向内整流4

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Transient receptor potential canonical 4 (TRPC4) channel is a nonselective calcium-permeable cation channels. In intestinal smooth muscle cells, TRPC4 currents contribute more than 80% to muscarinic cationic current (mIcat). With its inward-rectifying current-voltage relationship and high calcium permeability, TRPC4 channels permit calcium influx once the channel is opened by muscarinic receptor stimulation. Polyamines are known to inhibit nonselective cation channels that mediate the generation of mIcat. Moreover, it is reported that TRPC4 channels are blocked by the intracellular spermine through electrostatic interaction with glutamate residues (E728, E729). Here, we investigated the correlation between the magnitude of channel inactivation by spermine and the magnitude of channel conductance. We also found additional spermine binding sites in TRPC4. We evaluated channel activity with electrophysiological recordings and revalidated structural significance based on Cryo-EM structure, which was resolved recently. We found that there is no correlation between magnitude of inhibitory action of spermine and magnitude of maximum current of the channel. In intracellular region, TRPC4 attracts spermine at channel periphery by reducing access resistance, and acidic residues contribute to blocking action of intracellular spermine; channel periphery, E649; cytosolic space, D629, D649, and E687.
机译:瞬态受体潜在的规范4(TRPC4)通道是非选择性钙渗透阳离子通道。在肠道平滑肌细胞中,TRPC4电流促使肌肉蛋白阳离子电流(MICAT)贡献超过80%。随着其内向整流的电流 - 电压关系和高钙渗透率,TRPC4通道允许钙流入一旦通道被毒蕈碱受体刺激打开。已知多胺抑制介导MICAT的产生的非选择性阳离子通道。此外,据报道,通过与谷氨酸残基的静电相互作用(E728,E729)通过静电相互作用阻断TRPC4通道。在这里,我们研究了精美的信道失活的幅度与信道电导的幅度之间的相关性。我们还发现了TRPC4中的额外精素结合位点。我们评估了电生理记录的渠道活动,并根据最近解决的Cryo-EM结构重新定位结构意义。我们发现,抑制作用的抑制作用幅度与通道的最大电流的幅度之间没有相关性。在细胞内区域中,TRPC4通过降低抗癌性,在通道周周下吸引精霉素,并且酸性残基有助于阻断​​细胞内精胺的作用;频道外围,E649;细胞骨空间,D629,D649和E687。

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