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首页> 外文期刊>Journal of Cell Science >Distinct pools of cAMP centre on different isoforms of adenylyl cyclase in pituitary-derived GH3B6 cells.
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Distinct pools of cAMP centre on different isoforms of adenylyl cyclase in pituitary-derived GH3B6 cells.

机译:cAMP的不同集合集中在垂体来源的GH3B6细胞中腺苷酸环化酶的不同同工型上。

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摘要

Microdomains have been proposed to explain specificity in the myriad of possible cellular targets of cAMP. Local differences in cAMP levels can be generated by phosphodiesterases, which control the diffusion of cAMP. Here, we address the possibility that adenylyl cyclases, the source of cAMP, can be primary architects of such microdomains. Distinctly regulated adenylyl cyclases often contribute to total cAMP levels in endogenous cellular settings, making it virtually impossible to determine the contribution of a specific isoform. To investigate cAMP dynamics with high precision at the single-isoform level, we developed a targeted version of Epac2-camps, a cAMP sensor, in which the sensor was tagged to a catalytically inactive version of the Ca(2+)-stimulable adenylyl cyclase 8 (AC8). This sensor, and less stringently targeted versions of Epac2-camps, revealed opposite regulation of cAMP synthesis in response to Ca(2+) in GH(3)B(6) pituitary cells. Ca(2+) release triggered by thyrotropin-releasing hormone stimulated the minor endogenous AC8 species. cAMP levels were decreased by inhibition of AC5 and AC6, and simultaneous activation of phosphodiesterases, in different compartments of the same cell. These findings demonstrate the existence of distinct adenylyl-cyclase-centered cAMP microdomains in live cells and open the door to their molecular micro-dissection.
机译:已经提出了微结构域来解释在众多可能的cAMP细胞靶标中的特异性。磷酸二酯酶可产生cAMP水平的局部差异,该酶控制cAMP的扩散。在这里,我们探讨了腺苷酸环化酶(cAMP的来源)可以成为此类微域的主要设计者的可能性。不同调节的腺苷酸环化酶通常会在内源性细胞环境中促进总cAMP水平的升高,因此实际上无法确定特定同工型的作用。为了在单个同工型水平上高精度地研究cAMP动态,我们开发了Epac2-camps的目标版本,即cAMP传感器,其中该传感器被标记为Ca(2+)可刺激的腺苷酸环化酶的催化失活版本8(AC8)。此传感器,和不太严格的Epac2-camps的有针对性的版本,揭示了cAMP合成的反调节,以响应GH(3)B(6)垂体细胞​​中的Ca(2+)。促甲状腺素释放激素触发的Ca(2+)释放刺激了较小的内源AC8种类。在同一细胞的不同区室中,通过抑制AC5和AC6以及同时激活磷酸二酯酶,可降低cAMP水平。这些发现证明活细胞中存在独特的以腺苷酸环化酶为中心的cAMP微结构域,并为它们的分子显微解剖打开了大门。

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