首页> 外文期刊>The Journal of general physiology >Differential Regulation of ER Ca2+ Uptake and Release Rates Accounts for Multiple Modes of Ca2+-induced Ca2+ Release
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Differential Regulation of ER Ca2+ Uptake and Release Rates Accounts for Multiple Modes of Ca2+-induced Ca2+ Release

机译:ER Ca2 +吸收和释放速率的差异调节解释了Ca2 +诱导的Ca2 +释放的多种模式

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The ER is a central element in Ca2+ signaling, both as a modulator of cytoplasmic Ca2+ concentration ([Ca2+]i) and as a locus of Ca2+-regulated events. During surface membrane depolarization in excitable cells, the ER may either accumulate or release net Ca2+, but the conditions of stimulation that determine which form of net Ca2+ transport occurs are not well understood. The direction of net ER Ca2+ transport depends on the relative rates of Ca2+ uptake and release via distinct pathways that are differentially regulated by Ca2+, so we investigated these rates and their sensitivity to Ca2+ using sympathetic neurons as model cells. The rate of Ca2+ uptake by SERCAs (JSERCA), measured as the t-BuBHQ-sensitive component of the total cytoplasmic Ca2+ flux, increased monotonically with [Ca2+]i. Measurement of the rate of Ca2+ release (JRelease) during t-BuBHQ-induced [Ca2+]i transients made it possible to characterize the Ca2+ permeability of the ER (atchmode documentclass[fleqn,10pt,legalpaper]{article} usepackage{amssymb} usepackage{amsfonts} usepackage{amsmath} pagestyle{empty} egin{document} (overline{mathrm{P}}_{mathrm{ER}}) end{document}), describing the activity of all Ca2+-permeable channels that contribute to passive ER Ca2+ release, including ryanodine-sensitive Ca2+ release channels (RyRs) that are responsible for CICR. Simulations based on experimentally determined descriptions of JSERCA, atchmode documentclass[fleqn,10pt,legalpaper]{article} usepackage{amssymb} usepackage{amsfonts} usepackage{amsmath} pagestyle{empty} egin{document} (overline{mathrm{P}}_{mathrm{ER}}) end{document}, and of Ca2+ extrusion across the plasma membrane (Jpm) accounted for our previous finding that during weak depolarization, the ER accumulates Ca2+, but at a rate that is attenuated by activation of a CICR pathway operating in parallel with SERCAs to regulate net ER Ca2+ transport. Caffeine greatly increased the [Ca2+] sensitivity of atchmode documentclass[fleqn,10pt,legalpaper]{article} usepackage{amssymb} usepackage{amsfonts} usepackage{amsmath} pagestyle{empty} egin{document} (overline{mathrm{P}}_{mathrm{ER}}) end{document}, accounting for the effects of caffeine on depolarization-evoked [Ca2+]i elevations and caffeine-induced [Ca2+]i oscillations. Extending the rate descriptions of JSERCA, atchmode documentclass[fleqn,10pt,legalpaper]{article} usepackage{amssymb} usepackage{amsfonts} usepackage{amsmath} pagestyle{empty} egin{document} (overline{mathrm{P}}_{mathrm{ER}}) end{document}, and Jpm to higher [Ca2+]i levels shows how the interplay between Ca2+ transport systems with different Ca2+ sensitivities accounts for the different modes of CICR over different ranges of [Ca2+]i during stimulation.
机译:ER是Ca2 +信号传导的中心元素,既是细胞质Ca2 +浓度([Ca2 +] i)的调节剂,又是Ca2 +调控事件的发生地。在可兴奋细胞的表面膜去极化过程中,ER可能会积累或释放净Ca2 +,但是对于确定发生哪种形式的净Ca2 +转运的刺激条件尚不甚了解。内质网Ca2 +净运输的方向取决于通过Ca2 +差异调节的不同途径所吸收和释放的Ca2 +的相对速率,因此我们以交感神经元为模型细胞研究了这些速率及其对Ca2 +的敏感性。 SERCA(JSERCA)吸收的Ca2 +速率(以总胞质Ca2 +通量的t-BuBHQ敏感成分衡量)随[Ca2 +] i单调增加。在t-BuBHQ诱导的[Ca2 +] i瞬变过程中,Ca2 +释放速率(JRelease)的测量使得表征ER的Ca2 +渗透性成为可能( batchmode documentclass [fleqn,10pt,legalpaper] {article} usepackage { amssymb} usepackage {amsfonts} usepackage {amsmath} pagestyle {empty} begin {document} ( overline { mathrm {P}} __ mathrm {ER}} ) end {document}),描述了有助于被动ER Ca2 +释放的所有Ca2 +渗透通道的活性,包括负责CICR的对ryanodine敏感的Ca2 +释放通道(RyRs)。基于实验确定的JSERCA, batchmode documentclass [fleqn,10pt,legalpaper] {article} usepackage {amssymb} usepackage {amsfonts} usepackage {amsmath} pagestyle {empty} begin {document} ( overline { mathrm {P}} _ { mathrm {ER}} } end {document},而在质膜上(Jpm)挤出Ca2 +的原因是我们先前的发现,即在弱去极化过程中,ER会积聚Ca2 + ,但其速率会因激活与SERCA并行运行的CICR通路而受到调节,从而调节净ER Ca2 +转运。咖啡因大大提高了 batchmode documentclass [fleqn,10pt,legalpaper]的[Ca2 +]敏感性{article} usepackage {amssymb} usepackage {amsfonts} usepackage {amsmath} pagestyle {empty} begin {document} ( overline { mathrm {P}} _ { mathrm {ER}} } end {document}中,说明了咖啡因对去极化引起的[Ca2 +] i升高和咖啡因引起的[Ca2 +] i振荡的影响。扩展JSERCA的速率描述, batchmode documentclass [fleqn,10pt,legalpaper] {article} usepackage {amssymb} usepackage {amsfonts} usepackage {amsmath} pagestyle {empty} begin {document} ( overline { mathrm {P}} _ { mathrm {ER}} ) end {document},然后将Jpm设置为较高的[Ca2 +] i水平,说明具有不同Ca2 +敏感性的Ca2 +传输系统之间的相互作用如何解释了不同的模式在刺激期间,在[Ca2 +] i的不同范围内的CICR。

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