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桑德花青素对胆绿素动力学和光谱特性的调节作用。

Modulation of biliverdin dynamics and spectral properties by Sandercyanin.

作者信息

Ghosh Swagatha, Mondal Sayan, Yadav Keerti, Aggarwal Shantanu, Schaefer Wayne F, Narayana Chandrabhas, Subramanian Ramaswamy

机构信息

Institute for Stem Cell Science and Regenerative Medicine Bangalore 560065 India

Department of Chemistry and Molecular Biology, University of Gothenburg Medicinaregatan 9C 40530 Gothenburg Sweden.

出版信息

RSC Adv. 2022 Jul 13;12(31):20296-20304. doi: 10.1039/d2ra02880h. eCollection 2022 Jul 6.

Abstract

Biliverdin IX-alpha (BV), a tetrapyrrole, is found ubiquitously in most living organisms. It functions as a metabolite, pigment, and signaling compound. While BV is known to bind to diverse protein families such as heme-metabolizing enzymes and phytochromes, not many BV-bound lipocalins (ubiquitous, small lipid-binding proteins) have been studied. The molecular basis of binding and conformational selectivity of BV in lipocalins remains unexplained. Sandercyanin (SFP)-BV complex is a blue lipocalin protein present in the mucus of the Canadian walleye (). In this study, we present the structures and binding modes of BV to SFP. Using a combination of designed site-directed mutations, X-ray crystallography, UV/VIS, and resonance Raman spectroscopy, we have identified multiple conformations of BV that are stabilized in the binding pocket of SFP. In complex with the protein, these conformers generate varied spectroscopic signatures both in their absorption and fluorescence spectra. We show that despite no covalent anchor, structural heterogeneity of the chromophore is primarily driven by the D-ring pyrrole of BV. Our work shows how conformational promiscuity of BV is correlated to the rearrangement of amino acids in the protein matrix leading to modulation of spectral properties.

摘要

胆绿素IX-α(BV)是一种四吡咯,在大多数生物体中普遍存在。它作为一种代谢产物、色素和信号化合物发挥作用。虽然已知BV能与多种蛋白质家族结合,如血红素代谢酶和植物色素,但对许多与BV结合的脂钙蛋白(普遍存在的小脂质结合蛋白)的研究并不多。脂钙蛋白中BV的结合和构象选择性的分子基础仍未得到解释。桑德花青素(SFP)-BV复合物是一种存在于加拿大白眼鱼黏液中的蓝色脂钙蛋白。在本研究中,我们展示了BV与SFP的结构和结合模式。通过结合设计的定点突变、X射线晶体学、紫外/可见光谱和共振拉曼光谱,我们确定了在SFP结合口袋中稳定存在的BV的多种构象。与蛋白质结合时,这些构象异构体在吸收光谱和荧光光谱中产生不同的光谱特征。我们表明,尽管没有共价锚定,但发色团的结构异质性主要由BV的D环吡咯驱动。我们的工作展示了BV的构象混杂性如何与蛋白质基质中氨基酸的重排相关,从而导致光谱性质的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21ba/9277520/75446c809599/d2ra02880h-f1.jpg

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