adenylyl cyclase 8
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Function ◽  
2021 ◽  
Author(s):  
Pulak Kar ◽  
Pradeep Barak ◽  
Anna Zerio ◽  
Yu-Ping Lin ◽  
Amy J Parekh ◽  
...  

Abstract To avoid conflicting and deleterious outcomes, eukaryotic cells often confine signalling molecules to spatially restricted sub-compartments. The smallest signalling unit is the Ca2+ nanodomain, forming near open Ca2+ channels. Ca2+ nanodomains near store-operated Orai1 channels stimulate calcineurin, which activates the transcription factor NFAT1, and both enzyme and target are initially attached to the plasma membrane through the scaffolding protein AKAP79. Here we show that a cAMP signalling nexus also forms adjacent to Orai1. Protein kinase A and phosphodiesterase 4, an enzyme that rapidly breaks down cAMP, both associate with AKAP79 and realign close to Orai1 after stimulation. PCR and mass spectrometry failed to show expression of Ca2+-activated adenylyl cyclase 8 in HEK293 cells, whereas the enzyme was observed in neuronal cell lines. FRET and biochemical measurements of bulk cAMP and protein kinase A activity consistently failed to show an increase in adenylyl cyclase activity following even a large rise in cytosolic Ca2+. Furthermore, expression of AKAP79-CUTie, a cAMP FRET sensor tethered to AKAP79, did not report a rise in cAMP after stimulation, despite AKAP79 association with Orai1. Hence HEK293 cells do not express functionally active Ca2+-activated adenylyl cyclases including adenylyl cyclase 8. Our results show that two ancient second messengers are independently generated in nanodomains close to Orai1 Ca2+ channels.


Cells ◽  
2021 ◽  
Vol 10 (6) ◽  
pp. 1308
Author(s):  
José Sánchez-Collado ◽  
José J. López ◽  
Juan A. Rosado

The interplay between the Ca2+-sensitive adenylyl cyclase 8 (AC8) and Orai1 channels plays an important role both in the activation of the cAMP/PKA signaling and the modulation of Orai1-dependent Ca2+ signals. AC8 interacts with a N-terminal region that is exclusive to the Orai1 long variant, Orai1α. The interaction between both proteins allows the Ca2+ that enters the cell through Orai1α to activate the generation of cAMP by AC8. Subsequent PKA activation results in Orai1α inactivation by phosphorylation at serine-34, thus shaping Orai1-mediated cellular functions. In breast cancer cells, AC8 plays a relevant role supporting a variety of cancer hallmarks, including proliferation and migration. Breast cancer cells overexpress AC8, which shifts the AC8-Orai1 stoichiometry in favor of the former and leads to the impairment of PKA-dependent Orai1α inactivation. This mechanism contributes to the enhanced SOCE observed in triple-negative breast cancer cells. This review summarizes the functional interaction between AC8 and Orai1α in normal and breast cancer cells and its relevance for different cancer features.


2019 ◽  
Vol 2019 ◽  
pp. 1-9 ◽  
Author(s):  
Xiangchen Kong ◽  
Bingfeng Li ◽  
Yushen Deng ◽  
Xiaosong Ma

Adenylyl cyclase 8 (ADCY8) and Farnesoid X Receptor (FXR) have been identified in pancreatic β-cells and play important roles in insulin secretion. But the mechanisms underlying with respect to the regulation of ADCY8 expression in β-cells, particularly whether FXR is involved, remain unexplored. We now show that ADCY8 expression is decreased in Goto-Kakizaki (GK) rat islets compared with healthy Wistar controls. We also found that reduced ADCY8 is associated with decreased expression of FXR. Consistently, ADCY8 expression was suppressed by the knockdown of FXR in INS-1 832/13 cells, as well as the islets from FXR knockout mice. On the contrary, ADCY8 expression was increased in FXR-overexpressed INS-1 832/13 cells or in the case of FXR activation. Mechanistically, FXR directly binds to Adcy8 promoter and recruits the histone acetyltransferase Steroid Receptor Coactivator 1 (SRC1), thereby resulting in the increased acetylation of histone H3 in Adcy8 locus, promoting Adcy8 gene transcription in β-cells. Thus, this study indicates that FXR is a critical transcription factor that mediates ADCY8 expression in pancreatic β-cells and has characterized the chromatin modification associated with Adcy8 transcription.


2017 ◽  
Vol 9 (2) ◽  
pp. 346-357 ◽  
Author(s):  
Michael P. Hayes ◽  
Monica Soto-Velasquez ◽  
C. Andrew Fowler ◽  
Val J. Watts ◽  
David L. Roman

2016 ◽  
Vol 119 ◽  
pp. 24-29 ◽  
Author(s):  
Xia Chen ◽  
Guoying Dong ◽  
Changhong Zheng ◽  
Hongbing Wang ◽  
Wenwei Yun ◽  
...  

2014 ◽  
Vol 17 (1) ◽  
pp. 105-105
Author(s):  
Sonya G. Fonseca ◽  
Fumihiko Urano ◽  
Gordon C. Weir ◽  
Jesper Gromada ◽  
Mark Burcin

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