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The cAMP sensors EPAC1 and EPAC2 display distinct subcellular distributions despite sharing a common nuclear pore localisation signal

机译:尽管共享一个共同的核孔定位信号但cAMP传感器EPAC1和EPAC2仍显示出不同的亚细胞分布

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摘要

We have identified a conserved nuclear pore localisation signal (NPLS; amino acids 764–838 of EPAC1) in the catalytic domains of the cAMP-sensors, EPAC1 and EPAC2A. Consequently, EPAC1 is mainly localised to the nuclear pore complex in HEK293T cells where it becomes activated following stimulation with cAMP. In contrast, structural models indicate that the cAMP-binding domain of EPAC2A (CNBD1) blocks access to the conserved NPLS in EPAC2A, reducing its ability to interact with nuclear binding sites. Consequently, a naturally occurring EPAC2 isoform, EPAC2B, which lacks CNBD1 is enriched in nuclear fractions, similar to EPAC1. Structural differences in EPAC isoforms may therefore determine their intracellular location and their response to elevations in intracellular cAMP.
机译:我们已经在cAMP传感器EPAC1和EPAC2A的催化域中确定了一个保守的核孔定位信号(NPLS; EPAC1的764-838位氨基酸)。因此,EPAC1主要位于HEK293T细胞的核孔复合体中,在被cAMP刺激后被激活。相反,结构模型表明,EPAC2A的cAMP结合域(CNBD1)阻止了对EPAC2A中保守的NPLS的访问,从而降低了其与核结合位点相互作用的能力。因此,缺乏CNBD1的天然EPAC2亚型EPAC2B与EPAC1类似,富含核级分。因此,EPAC亚型的结构差异可能决定了它们在细胞内的位置以及对细胞内cAMP升高的反应。

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