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Spatial encoding of cyclic AMP signaling specificity by GPCR endocytosis

机译:GPCR内吞作用对环AMP信号传导特异性的空间编码

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摘要

G protein-coupled receptors (GPCRs) are well known to signal via cyclic AMP (cAMP) production at the plasma membrane, but it is now clear that various GPCRs also signal after internalization. Apart from its temporal impact through prolonging the cellular response, we wondered whether the endosome-initiated signal encodes any discrete spatial information. Using the β2-adrenoceptor (β2-AR) as a model, we show that endocytosis is required for the full repertoire of downstream cAMP-dependent transcriptional control. Next, we describe an orthogonal optogenetic approach to definitively establish that the location of cAMP production is indeed the critical variable determining the transcriptional response. Finally, our results suggest that this spatial encoding scheme helps cells functionally discriminate chemically distinct β2-AR ligands according to differences in their ability to promote receptor endocytosis. These findings reveal a discrete principle for achieving cellular signaling specificity based on endosome-mediated spatial encoding of intracellular second messenger production and ′location-aware′ downstream transcriptional control.
机译:众所周知,G蛋白偶联受体(GPCR)通过质膜上的循环AMP(cAMP)产生信号,但是现在很明显,各种GPCR在内化后也发出信号。除了通过延长细胞反应对时间的影响外,我们想知道内体启动的信号是否编码任何离散的空间信息。使用β2-肾上腺素能受体(β2-AR)作为模型,我们表明内吞作用是下游cAMP依赖性转录控制的全部功能所必需的。接下来,我们描述一种正交光遗传学方法,以确定性地确定cAMP产生的位置确实是决定转录反应的关键变量。最后,我们的结果表明,这种空间编码方案可根据细胞促进受体内吞作用的能力差异,从功能上区分化学上不同的β2-AR配体。这些发现揭示了基于细胞内第二信使产生的内体介导的空间编码和“位置感知”下游转录控制的实现细胞信号传导特异性的离散原理。

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