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Role of Plasma Membrane Calcium ATPases in Calcium Clearance from Olfactory Sensory Neurons

机译:血浆膜钙ATP酶在嗅觉感觉神经元钙清除中的作用

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摘要

Odorants cause Ca2+ to rise in olfactory sensory neurons (OSNs) first within the ciliary compartment, then in the dendritic knob, and finally in the cell body. Ca2+ not only excites but also produces negative feedback on the transduction pathway. To relieve this Ca2+-dependent adaptation, Ca2+ must be cleared from the cilia and dendritic knob by mechanisms that are not well understood. This work focuses on the roles of plasma membrane calcium pumps (PMCAs) through the use of inhibitors and mice missing 1 of the 4 PMCA isoforms (PMCA2). We demonstrate a significant contribution of PMCAs in addition to contributions of the Na+/Ca2+ exchanger and endoplasmic reticulum (ER) calcium pump to the rate of calcium clearance after OSN stimulation. PMCAs in neurons can shape the Ca2+ signal. We discuss the contributions of the specific PMCA isoforms to the shape of the Ca2+ transient that controls signaling and adaptation in OSNs.
机译:气味导致Ca 2 + 首先在睫状区中,然后在树突状结中,最后在细胞体内的嗅觉感觉神经元(OSN)中升高。 Ca 2 + 不仅兴奋,而且在转导途径上产生负反馈。要缓解这种Ca 2 + 依赖的适应性,必须通过尚未完全了解的机制从纤毛和树突状结中清除Ca 2 + 。这项工作着重于通过使用抑制剂和缺失4种PMCA同工型(PMCA2)中的1种的小鼠来研究质膜钙泵(PMCA)的作用。除了Na + / Ca 2 + 交换子和内质网(ER)钙泵对OSCA后钙清除率的贡献外,我们还证明了PMCA的显着贡献刺激。神经元中的PMCA可以塑造Ca 2 + 信号。我们讨论了特定的PMCA亚型对控制OSN中信号传导和适应的Ca 2 + 瞬变形状的贡献。

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