首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Ste20 Kinases Ste20-related Proline-Alanine-rich Kinase and Oxidative-stress Response 1 Regulate NKCC1 Function in Sensory Neurons
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The Ste20 Kinases Ste20-related Proline-Alanine-rich Kinase and Oxidative-stress Response 1 Regulate NKCC1 Function in Sensory Neurons

机译:Ste20激酶Ste20相关的脯氨酸富含丙氨酸的激酶和 氧化应激反应1调节感官NKCC1功能。 神经元

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摘要

NKCC1 is highly expressed in dorsal root ganglion neurons, where it is involved in gating sensory information. In a recent study, it was shown that peripheral nerve injury results in increased NKCC1 activity, not due to an increase in cotransporter expression, but to increased phosphorylation of the cotransporter (Pieraut, S., Matha, V., Sar, C., Hubert, T., Méchaly, I., Hilaire, C., Mersel, M., Delpire, E., Valmier, J., and Scamps, F. (2007) J. Neurosci. 27, 6751–6759). Our laboratory has also identified two Ste20-like kinases that bind and phosphorylate NKCC1: Ste20-related proline-alanine-rich kinase (SPAK) and oxidative-stress response 1 (OSR1). In this study, we show that both kinases are expressed at similar expression levels in spinal cord and dorsal root ganglion neurons, and that both kinases participate equally in the regulation of NKCC1. Using a novel fluorescence method to assay NKCC1 activity in single cells, we show a 50% reduction in NKCC1 activity in DRG neurons isolated from SPAK knockout mice, indicating that another kinase, e.g. OSR1, is present to phosphorylate and activate the cotransporter. Using a nociceptive dorsal root ganglion sensory neuronal cell line, which expresses the same cation-chloride cotransporters and kinases as native DRG neurons, and gene silencing via short hairpin RNA, we demonstrate a direct relationship between kinase expression and cotransporter activity. We show that inactivation of either kinase significantly affects NKCC1 activity, whereas inactivation of both kinases results in an additive effect. In summary, our study demonstrates redundancy of kinases in the regulation of NKCC1 in dorsal root ganglion neurons.
机译:NKCC1在背根神经节神经元中高度表达,参与门控感觉信息。在最近的一项研究中,研究表明,周围神经损伤导致NKCC1活性增加,这不是由于共转运蛋白表达的增加,而是由于共转运蛋白的磷酸化的增加(Pieraut,S.,Matha,V.,Sar,C., Hubert,T.,Méchaly,I.,Hilaire,C.,Mersel,M.,Delpire,E.,Valmier,J.和Scamps,F.(2007)J. Neurosci。27,6751-6759。我们的实验室还鉴定了两种结合并磷酸化NKCC1的Ste20样激酶:Ste20相关的脯氨酸富含丙氨酸的激酶(SPAK)和氧化应激反应1(OSR1)。在这项研究中,我们表明两种激酶在脊髓和背根神经节神经元中的表达水平相似,并且两种激酶均参与NKCC1的调节。使用新颖的荧光方法测定单细胞中的NKCC1活性,我们显示从SPAK基因敲除小鼠中分离出的DRG神经元中NKCC1活性降低了50%,表明另一种激酶,例如存在OSR1来磷酸化和激活共转运蛋白。使用伤害性背根神经节感觉神经元细胞系,该细胞系表达相同的阳离子-氯化物共转运蛋白 和激酶作为天然DRG神经元,并通过短发夹RNA沉默基因, 我们证明了激酶表达与 共转运蛋白活性。我们证明两种激酶的失活 显着影响NKCC1活性,而两种激酶均失活 产生累加效果。总而言之,我们的研究表明了冗余 在调节背根神经节神经元NKCC1中的作用

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