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无序 AKAP 支架对磷酸酶招募的隐藏多价作用。

Hidden Multivalency in Phosphatase Recruitment by a Disordered AKAP Scaffold.

机构信息

Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge CB2 1GA, UK.

Stevenage Bioscience Catalyst, Gunnels Wood Rd, Stevenage SG1 2FX, UK.

出版信息

J Mol Biol. 2022 Aug 30;434(16):167682. doi: 10.1016/j.jmb.2022.167682. Epub 2022 Jun 11.

DOI:10.1016/j.jmb.2022.167682
PMID:35697294
Abstract

Disordered scaffold proteins provide multivalent landing pads that, via a series of embedded Short Linear Motifs (SLiMs), bring together the components of a complex to orchestrate precise spatial and temporal regulation of cellular processes. One such protein is AKAP5 (previously AKAP79), which contains SLiMs that anchor PKA and Calcineurin, and recruit substrate (the TRPV1 receptor). Calcineurin is anchored to AKAP5 by a well-characterised PxIxIT SLiM. Here we show, using a combination of biochemical and biophysical approaches, that the Calcineurin PxIxIT-binding groove also recognises several hitherto unknown lower-affinity SLiMs in addition to the PxIxIT motif. We demonstrate that the assembly is in reality a complex system with conserved SLiMs spanning a wide affinity range. The capture is analogous to that seen for many DNA-binding proteins that have a weak non-specific affinity for DNA outside the canonical binding site, but different in that it involves (i) two proteins, and (ii) hydrophobic rather than electrostatic interactions. It is also compatible with the requirement for both stable anchoring of the enzyme and responsive downstream signalling. We conclude that the AKAP5 C-terminus is enriched in lower-affinity/mini-SLiMs that, together with the canonical SLiM, maintain a structurally disordered but tightly regulated signalosome.

摘要

紊乱的支架蛋白提供多价着陆点,通过一系列嵌入式短线性基序(SLiMs),将复杂的组成部分聚集在一起,协调细胞过程的精确时空调节。AKAP5(以前称为 AKAP79)就是这样一种蛋白质,它含有锚定 PKA 和钙调神经磷酸酶的 SLiMs,并招募底物(TRPV1 受体)。钙调神经磷酸酶通过一个特征明确的 PxIxIT SLiM 锚定在 AKAP5 上。在这里,我们使用生化和生物物理方法的组合表明,钙调神经磷酸酶 PxIxIT 结合槽除了 PxIxIT 基序外,还识别几种以前未知的低亲和力 SLiMs。我们证明,该组装实际上是一个具有保守 SLiMs 的复杂系统,其跨越广泛的亲和力范围。这种捕获类似于许多 DNA 结合蛋白的情况,这些蛋白在经典结合位点之外对 DNA 具有较弱的非特异性亲和力,但不同之处在于它涉及 (i) 两种蛋白质,以及 (ii) 疏水而不是静电相互作用。它也与酶的稳定锚定和响应下游信号的要求兼容。我们得出结论,AKAP5 C 末端富含低亲和力/迷你 SLiMs,这些 SLiMs 与经典 SLiM 一起维持结构无序但受严格调节的信号体。

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