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RGS9-2/G 5/R7BP复合物在体内的表达和定位是由细胞半胱氨酸蛋白酶对其组成型降解的动态控制所决定的。

Expression and localization of RGS9-2/G 5/R7BP complex in vivo is set by dynamic control of its constitutive degradation by cellular cysteine proteases.

作者信息

Anderson Garret R, Lujan Rafael, Semenov Arthur, Pravetoni Marco, Posokhova Ekaterina N, Song Joseph H, Uversky Vladimir, Chen Ching-Kang, Wickman Kevin, Martemyanov Kirill A

机构信息

Department of Pharmacology, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

J Neurosci. 2007 Dec 19;27(51):14117-27. doi: 10.1523/JNEUROSCI.3884-07.2007.

Abstract

A member of regulator of G-protein signaling family, RGS9-2, is an essential modulator of signaling through neuronal dopamine and opioid G-protein-coupled receptors. Recent findings indicate that the abundance of RGS9-2 determines sensitivity of signaling in the locomotor and reward systems in the striatum. In this study we report the mechanism that sets the concentration of RGS9-2 in vivo, thus controlling G-protein signaling sensitivity in the region. We found that RGS9-2 possesses specific degradation determinants which target it for constitutive destruction by lysosomal cysteine proteases. Shielding of these determinants by the binding partner R7 binding-protein (R7BP) controls RGS9-2 expression at the posttranslational level. In addition, binding to R7BP in neurons targets RGS9-2 to the specific intracellular compartment, the postsynaptic density. Implementation of this mechanism throughout ontogenetic development ensures expression of RGS9-2/type 5 G-protein beta subunit/R7BP complexes at postsynaptic sites in unison with increased signaling demands at mature synapses.

摘要

G蛋白信号调节家族成员RGS9-2是通过神经元多巴胺和阿片样物质G蛋白偶联受体进行信号传导的重要调节因子。最近的研究结果表明,RGS9-2的丰度决定了纹状体运动和奖赏系统中信号传导的敏感性。在本研究中,我们报告了在体内设定RGS9-2浓度的机制,从而控制该区域的G蛋白信号传导敏感性。我们发现RGS9-2具有特定的降解决定簇,可将其靶向溶酶体半胱氨酸蛋白酶进行组成型破坏。结合伴侣R7结合蛋白(R7BP)对这些决定簇的屏蔽在翻译后水平控制RGS9-2的表达。此外,在神经元中与R7BP结合将RGS9-2靶向特定的细胞内区室,即突触后致密区。在整个个体发育过程中实施该机制可确保RGS9-2/5型G蛋白β亚基/R7BP复合物在突触后位点的表达与成熟突触处增加的信号需求一致。

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