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
Department of Pharmacology, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Neurosci. 2007 Dec 19;27(51):14117-27. doi: 10.1523/JNEUROSCI.3884-07.2007.
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.
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。