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CaM激酶II对神经元中嗅觉腺苷酸环化酶的磷酸化作用及抑制:嗅觉信号减弱的一种机制。

Phosphorylation and inhibition of olfactory adenylyl cyclase by CaM kinase II in Neurons: a mechanism for attenuation of olfactory signals.

作者信息

Wei J, Zhao A Z, Chan G C, Baker L P, Impey S, Beavo J A, Storm D R

机构信息

Department of Pharmacology, University of Washington, Seattle 98195, USA.

出版信息

Neuron. 1998 Sep;21(3):495-504. doi: 10.1016/s0896-6273(00)80561-9.

Abstract

Acute desensitization of olfactory signaling is a critical property of the olfactory system that allows animals to detect and respond to odorants. Correspondingly, an important feature of odorant-stimulated cAMP increases is their transient nature, a phenomenon that may be attributable to the unique regulatory properties of the olfactory adenylyl cyclase (AC3). AC3 is stimulated by receptor activation and inhibited by Ca2+ through Ca2+/calmodulin kinase II (CaMKII) phosphorylation at Ser-1076. Since odorant-stimulated cAMP increases are accompanied by elevated intracellular Ca2+, CaMKII inhibition of AC3 may contribute to termination of olfactory signaling. To test this hypothesis, we generated a polyclonal antibody specific for AC3 phosphorylated at Ser-1076. A brief exposure of mouse olfactory cilia or primary olfactory neurons to odorants stimulated phosphorylation of AC3 at Ser-1076. This phosphorylation was blocked by inhibitors of CaMKII, which also ablated cAMP decreases associated with odorant-stimulated cAMP transients. These data define a novel mechanism for termination of olfactory signaling that may be important in olfactory responses.

摘要

嗅觉信号的急性脱敏是嗅觉系统的一项关键特性,它使动物能够检测并对气味剂做出反应。相应地,气味剂刺激引起的环磷酸腺苷(cAMP)增加的一个重要特征是其短暂性,这一现象可能归因于嗅觉腺苷酸环化酶(AC3)独特的调节特性。AC3受受体激活刺激,并通过Ca2+/钙调蛋白激酶II(CaMKII)在丝氨酸1076位点的磷酸化作用被Ca2+抑制。由于气味剂刺激引起的cAMP增加伴随着细胞内Ca2+升高,CaMKII对AC3的抑制作用可能有助于嗅觉信号的终止。为了验证这一假设,我们制备了一种针对丝氨酸1076位点磷酸化的AC3的多克隆抗体。将小鼠嗅觉纤毛或原代嗅觉神经元短暂暴露于气味剂中,可刺激AC3在丝氨酸1076位点的磷酸化。这种磷酸化被CaMKII抑制剂阻断,CaMKII抑制剂还消除了与气味剂刺激的cAMP瞬变相关的cAMP减少。这些数据确定了一种嗅觉信号终止的新机制,这在嗅觉反应中可能很重要。

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