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CAP1 在哺乳动物细胞中结合并激活腺苷酸环化酶。

CAP1 binds and activates adenylyl cyclase in mammalian cells.

机构信息

Department of Pharmacology and Chemical Biology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15261.

Institute of Molecular Biology and Biophysics, Paul Scherrer Institute, 5232 Villigen PSI, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 2021 Jun 15;118(24). doi: 10.1073/pnas.2024576118.

Abstract

CAP1 (Cyclase-Associated Protein 1) is highly conserved in evolution. Originally identified in yeast as a bifunctional protein involved in Ras-adenylyl cyclase and F-actin dynamics regulation, the adenylyl cyclase component seems to be lost in mammalian cells. Prompted by our recent identification of the Ras-like small GTPase Rap1 as a GTP-independent but geranylgeranyl-specific partner for CAP1, we hypothesized that CAP1-Rap1, similar to CAP-Ras-cyclase in yeast, might play a critical role in cAMP dynamics in mammalian cells. In this study, we report that CAP1 binds and activates mammalian adenylyl cyclase in vitro, modulates cAMP in live cells in a Rap1-dependent manner, and affects cAMP-dependent proliferation. Utilizing deletion and mutagenesis approaches, we mapped the interaction of CAP1-cyclase with CAP's N-terminal domain involving critical leucine residues in the conserved RLE motifs and adenylyl cyclase's conserved catalytic loops (e.g., C1a and/or C2a). When combined with a FRET-based cAMP sensor, CAP1 overexpression-knockdown strategies, and the use of constitutively active and negative regulators of Rap1, our studies highlight a critical role for CAP1-Rap1 in adenylyl cyclase regulation in live cells. Similarly, we show that CAP1 modulation significantly affected cAMP-mediated proliferation in an RLE motif-dependent manner. The combined study indicates that CAP1-cyclase-Rap1 represents a regulatory unit in cAMP dynamics and biology. Since Rap1 is an established downstream effector of cAMP, we advance the hypothesis that CAP1-cyclase-Rap1 represents a positive feedback loop that might be involved in cAMP microdomain establishment and localized signaling.

摘要

CAP1(环化酶相关蛋白 1)在进化中高度保守。最初在酵母中被鉴定为一种双功能蛋白,参与 Ras-腺苷酸环化酶和 F-肌动蛋白动力学调节,在哺乳动物细胞中似乎失去了腺苷酸环化酶成分。受我们最近鉴定的 Ras 样小 GTPase Rap1 作为 CAP1 的非依赖性但 geranylgeranyl 特异性伴侣的启发,我们假设 CAP1-Rap1,类似于酵母中的 CAP-Ras-环化酶,可能在哺乳动物细胞中的 cAMP 动力学中发挥关键作用。在这项研究中,我们报告 CAP1 在体外结合并激活哺乳动物腺苷酸环化酶,以 Rap1 依赖性方式调节活细胞中的 cAMP,并影响 cAMP 依赖性增殖。利用缺失和突变方法,我们绘制了 CAP1-环化酶与 CAP 的 N 端结构域的相互作用,涉及保守 RLE 基序中的关键亮氨酸残基和腺苷酸环化酶的保守催化环(例如,C1a 和/或 C2a)。当与基于 FRET 的 cAMP 传感器、CAP1 过表达-敲低策略以及 Rap1 的组成激活和负调节剂结合使用时,我们的研究强调了 CAP1-Rap1 在活细胞中腺苷酸环化酶调节中的关键作用。同样,我们表明 CAP1 调节显著影响以 RLE 基序依赖性方式的 cAMP 介导的增殖。综合研究表明,CAP1-环化酶-Rap1 代表 cAMP 动力学和生物学中的一个调节单元。由于 Rap1 是 cAMP 的既定下游效应物,我们提出了 CAP1-环化酶-Rap1 代表一个正反馈回路的假设,该回路可能参与 cAMP 微区的建立和局部信号转导。

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