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剪接事件改变 ADGRL1/latrophilin-1 胞质尾,促进相反和双重 cAMP 信号通路。

Alternative splicing event modifying ADGRL1/latrophilin-1 cytoplasmic tail promotes both opposing and dual cAMP signaling pathways.

机构信息

Departamento de Fisiología, Biofísica, y Neurociencias, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (Cinvestav-IPN), Ciudad de México, México.

Departamento de Biología Celular, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (Cinvestav-IPN), Ciudad de México, México.

出版信息

Ann N Y Acad Sci. 2019 Nov;1456(1):168-185. doi: 10.1111/nyas.14198. Epub 2019 Jul 24.

Abstract

The adhesion G protein-coupled receptor ADGRL1/latrophilin-1 (LPHN1) stabilizes synapse formation through heterophilic interactions. A growing consensus is pointing to the role of LPHN1 in modulating intracellular levels of cAMP, although conflicting data exist. Variants of LPHN1 resulting from alternative splicing differ at multiple sites, two of which, designated as SSA and SSB, modify extracellular and intracellular receptor regions, respectively. While SSA splicing modulates receptor-ligand affinity, the function of SSB splicing remains elusive. Here, we explored the role of SSB in an attempt to unify current findings on LPHN1 signaling pathways by testing SSB-containing and SSB-deficient receptor variants in signaling paradigms involving interaction with their ligands neurexin and FLRT. cAMP competitive binding assays revealed that cells expressing either receptor variant exhibited a ligand-dependent decrease in the forskolin-induced cAMP accumulation. Surprisingly, the expression of SSB-containing LPHN1 promoted both constitutive and ligand-dependent cAMP production, whereas SSB-deficient LPHN1 did not. Pertussis toxin treatment unveiled a constitutive coupling to G for SSB-containing LPHN1 while abrogating the ligand-mediated activation of G . Importantly, neither receptor variant increased the intracellular concentration of Ca nor MAP kinase activation in the presence of ligands. These results suggest that SSB splicing selectively affects the duality of LPHN1 signaling toward opposing cAMP pathways.

摘要

黏附 G 蛋白偶联受体 ADGRL1/latrophilin-1(LPHN1)通过异源相互作用稳定突触形成。越来越多的共识指向 LPHN1 在调节细胞内环腺苷酸(cAMP)水平方面的作用,尽管存在相互矛盾的数据。通过选择性剪接产生的 LPHN1 变体在多个位点存在差异,其中两个位点分别称为 SSA 和 SSB,分别修饰细胞外和细胞内受体区域。虽然 SSA 剪接调节受体-配体亲和力,但 SSB 剪接的功能仍不清楚。在这里,我们研究了 SSB 的作用,试图通过在涉及与配体神经连接蛋白和 FLRT 相互作用的信号通路中测试含有 SSB 和缺乏 SSB 的受体变体,来统一当前关于 LPHN1 信号通路的发现。cAMP 竞争性结合测定显示,表达任一种受体变体的细胞均表现出配体依赖性的 forskolin诱导的 cAMP 积累减少。令人惊讶的是,含有 SSB 的 LPHN1 的表达促进了组成型和配体依赖性的 cAMP 产生,而缺乏 SSB 的 LPHN1 则没有。百日咳毒素处理揭示了含有 SSB 的 LPHN1 与 G 的组成型偶联,而消除了配体介导的 G 的激活。重要的是,在存在配体的情况下,两种受体变体均未增加细胞内 cAMP 浓度或 MAP 激酶的激活。这些结果表明,SSB 剪接选择性地影响 LPHN1 信号向相反的 cAMP 通路的双重性。

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