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人锌铁调节转运蛋白 4 细胞内环中伴随的疾病和高亲和力锌结合。

Concomitant disorder and high-affinity zinc binding in the human zinc- and iron-regulated transport protein 4 intracellular loop.

机构信息

Department of Chemistry and Biochemistry, Worcester Polytechnic Institute, Worcester, Massachusetts 01609.

Department of Molecular Biology and Biophysics, UConn Health, Farmington, Connecticut 06030.

出版信息

Protein Sci. 2019 May;28(5):868-880. doi: 10.1002/pro.3591. Epub 2019 Mar 12.

Abstract

The human zinc- and iron-regulated transport protein 4 (hZIP4) protein is the major plasma membrane protein responsible for the uptake of zinc in the body, and as such it plays a key role in cellular zinc homeostasis. hZIP4 plasma membrane levels are regulated through post-translational modification of its large, disordered, histidine-rich cytosolic loop (ICL2) in response to intracellular zinc concentrations. Here, structural characteristics of the isolated disordered loop region, both in the absence and presence of zinc, were investigated using nuclear magnetic resonance (NMR) spectroscopy. NMR chemical shifts, coupling constants and temperature coefficients of the apoprotein, are consistent with a random coil with minor propensities for transient polyproline Type II helices and β-strand in regions implicated in post-translational modifications. The ICL2 protein remains disordered upon zinc binding, which induces exchange broadening. Paramagnetic relaxation enhancement experiments reveal that the histidine-rich region in the apoprotein makes transient tertiary contacts with predicted post-translational modification sites. The residue-specific data presented here strengthen the relationship between hZIP4 post-translational modifications, which impact its role in cellular zinc homeostasis, and zinc sensing by the intracellular loop. Furthermore, the zinc sensing mechanism employed by the ICL2 protein demonstrates that high-affinity interactions can occur in the presence of conformational disorder.

摘要

人锌铁调节转运蛋白 4(hZIP4)蛋白是负责体内锌摄取的主要质膜蛋白,因此在细胞内锌稳态中起着关键作用。hZIP4 质膜水平通过其大的、无序的富含组氨酸的细胞内环(ICL2)的翻译后修饰来调节,以响应细胞内锌浓度。在这里,使用核磁共振(NMR)光谱法研究了无锌和有锌时分离的无序环区域的结构特征。无锌时的 NMR 化学位移、偶联常数和温度系数与具有较小的瞬态脯氨酸 II 型螺旋和β-链倾向的无规卷曲一致,这些区域与翻译后修饰有关。锌结合后,ICL2 蛋白仍然保持无序,这会导致交换增宽。顺磁弛豫增强实验表明,富含组氨酸的区域在apo 蛋白中与预测的翻译后修饰位点形成瞬时三级接触。这里提供的残基特异性数据加强了 hZIP4 翻译后修饰与其在细胞内锌稳态中的作用之间的关系,以及细胞内环的锌感应。此外,ICL2 蛋白采用的锌感应机制表明,在存在构象无序的情况下可以发生高亲和力相互作用。

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