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解析 Myc 蛋白的核定位序列与核载体 Importin α3 的结合

Deciphering the Binding of the Nuclear Localization Sequence of Myc Protein to the Nuclear Carrier Importin α3.

机构信息

CNR-NANOTEC, SS Rende (CS), Department of Physics, University of Calabria, 87036 Rende, Italy.

Instituto de Biocomputación y Física de Sistemas Complejos-Unidad Mixta GBsC-CSIC-BIFI, Universidad de Zaragoza, 50018 Zaragoza, Spain.

出版信息

Int J Mol Sci. 2022 Dec 5;23(23):15333. doi: 10.3390/ijms232315333.

Abstract

The oncoprotein Myc is a transcription factor regulating global gene expression and modulating cell proliferation, apoptosis, and metabolism. Myc has a nuclear localization sequence (NLS) comprising residues Pro320 to Asp328, to allow for nuclear translocation. We designed a peptide comprising such region and the flanking residues (Ala310-Asn339), NLS-Myc, to study, in vitro and in silico, the ability to bind importin α3 (Impα3) and its truncated species (ΔImpα3) depleted of the importin binding domain (IBB), by using fluorescence, circular dichroism (CD), biolayer interferometry (BLI), nuclear magnetic resonance (NMR), and molecular simulations. NLS-Myc interacted with both importin species, with affinity constants of ~0.5 µM (for Impα3) and ~60 nM (for ΔImpα3), as measured by BLI. The molecular simulations predicted that the anchoring of NLS-Myc took place in the major binding site of Impα3 for the NLS of cargo proteins. Besides clarifying the conformational behavior of the isolated NLS of Myc in solution, our results identified some unique properties in the binding of this localization sequence to the nuclear carrier Impα3, such as a difference in the kinetics of its release mechanism depending on the presence or absence of the IBB domain.

摘要

癌蛋白 Myc 是一种转录因子,调节全局基因表达,并调节细胞增殖、凋亡和代谢。Myc 具有一个核定位序列 (NLS),由残基 Pro320 到 Asp328 组成,允许核易位。我们设计了一个包含该区域和侧翼残基 (Ala310-Asn339) 的肽,NLS-Myc,用于通过荧光、圆二色性 (CD)、生物层干涉 (BLI)、核磁共振 (NMR) 和分子模拟,研究其在体外和计算机模拟中与缺失了核输入结合域 (IBB) 的 importin α3 (Impα3) 及其截断形式 (ΔImpα3) 结合的能力。NLS-Myc 与两种 importin 物种相互作用,通过 BLI 测量,其亲和常数约为 0.5 µM(对于 Impα3)和 60 nM(对于 ΔImpα3)。分子模拟预测,NLS-Myc 的锚定发生在 Impα3 对货物蛋白 NLS 的主要结合位点上。除了阐明分离的 Myc NLS 在溶液中的构象行为外,我们的结果还确定了该定位序列与核载体 Impα3 结合的一些独特性质,例如其释放机制的动力学因 IBB 结构域的存在与否而有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6382/9739371/fe5d3d5aa079/ijms-23-15333-g001.jpg

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