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细胞视黄酸结合蛋白1调节钙/钙调蛋白依赖性蛋白激酶II激活的分子基础。

Molecular basis for cellular retinoic acid-binding protein 1 in modulating CaMKII activation.

作者信息

Nhieu Jennifer, Miller Michelle C, Lerdall Thomas A, Mayo Kevin H, Wei Li-Na

机构信息

Department of Pharmacology, University of Minnesota Medical School, Minneapolis, MN, United States.

Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN, United States.

出版信息

Front Mol Biosci. 2023 Sep 26;10:1268843. doi: 10.3389/fmolb.2023.1268843. eCollection 2023.

Abstract

Cellular retinoic acid (RA)-binding protein 1 (CRABP1) is a highly conserved protein comprised of an anti-parallel, beta-barrel, and a helix-turn-helix segment outside this barrel. Functionally, CRABP1 is thought to bind and sequester cytosolic RA. Recently, CRABP1 has been established as a major mediator of rapid, non-genomic activity of RA in the cytosol, referred to as "non-canonical" activity. Previously, we have reported that CRABP1 interacts with and dampens the activation of calcium-calmodulin (Ca-CaM)-dependent kinase 2 (CaMKII), a major effector of Ca signaling. Through biophysical, molecular, and cellular assays, we, herein, elucidate the molecular and structural mechanisms underlying the action of CRABP1 in dampening CaMKII activation. We identify an interaction surface on CRABP1 for CaMKII binding, located on the beta-sheet surface of the barrel, and an allosteric region within the helix segment outside the barrel, where both are important for interacting with CaMKII. Molecular studies reveal that CRABP1 preferentially associates with the inactive form of CaMKII, thereby dampening CaMKII activation. Alanine mutagenesis of residues implicated in the CaMKII interaction results in either a loss of this preference or a shift of CRABP1 from associating with the inactive CaMKII to associating with the active CaMKII, which corresponds to changes in CRABP1's effect in modulating CaMKII activation. This is the first study to elucidate the molecular and structural basis for CRABP1's function in modulating CaMKII activation. These results further shed insights into CRABP1's functional involvement in multiple signaling pathways, as well as its extremely high sequence conservation across species and over evolution.

摘要

细胞视黄酸(RA)结合蛋白1(CRABP1)是一种高度保守的蛋白质,由一个反平行的β桶结构以及该桶外部的一个螺旋-转角-螺旋片段组成。在功能上,CRABP1被认为可结合并隔离胞质RA。最近,CRABP1已被确立为RA在胞质溶胶中快速非基因组活性(即“非经典”活性)的主要介质。此前,我们曾报道CRABP1与钙-钙调蛋白(Ca-CaM)依赖性激酶2(CaMKII)相互作用并抑制其激活,CaMKII是Ca信号的主要效应器。通过生物物理、分子和细胞分析,我们在此阐明了CRABP1抑制CaMKII激活作用的分子和结构机制。我们确定了CRABP1上与CaMKII结合的相互作用表面,位于桶的β折叠表面,以及桶外部螺旋片段内的一个变构区域,两者对于与CaMKII相互作用都很重要。分子研究表明,CRABP1优先与CaMKII的无活性形式结合,从而抑制CaMKII的激活。对参与CaMKII相互作用的残基进行丙氨酸诱变会导致这种偏好性丧失,或者使CRABP1从与无活性CaMKII结合转变为与活性CaMKII结合,这与CRABP1在调节CaMKII激活方面的作用变化相对应。这是第一项阐明CRABP1在调节CaMKII激活中功能的分子和结构基础的研究。这些结果进一步深入了解了CRABP1在多种信号通路中的功能参与情况,以及其在物种间和进化过程中极高的序列保守性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f02/10562560/d3ca59de4017/fmolb-10-1268843-g001.jpg

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