Vujica Lana, Lončar Jovica, Mišić Lana, Lučić Bono, Radman Katarina, Mihaljević Ivan, Bertoša Branimir, Mesarić Josip, Horvat Marina, Smital Tvrtko
Laboratory for Molecular Ecotoxicology, Division for Marine and Environmental Research, Ruđer Bošković Institute, Bijenička cesta 54, 10 000 Zagreb, Croatia.
NMR Center, Ruđer Bošković Institute, Bijenička cesta 54, 10 000 Zagreb, Croatia.
Sci Total Environ. 2023 Nov 25;901:165956. doi: 10.1016/j.scitotenv.2023.165956. Epub 2023 Aug 2.
Zebrafish Mate3 is one of six co-orthologs of human multidrug and toxin extrusion proteins. It is highly expressed in the kidneys, intestine, testes, and brain of males. Initial interaction studies showed its interaction with xenobiotic compounds, suggesting a role in the efflux of toxic compounds. In this study, we aimed to test various environmental contaminants for their interaction with zebrafish Mate3. We developed a stable zebrafish Mate3 cell line and optimized a high-throughput screening assay using DAPI and ASP as fluorescent model substrates. To gain insight into the structure and function of the Mate3 protein and relate these to the results of the DAPI and ASP transport measurements, we predicted its 3D structure using the AlphaFold2 algorithm. A 3D structure with high per residue confidence scores with 13 transmembrane segments (TMs) was obtained, with topology and mutual positioning characteristic of the Mate protein family in a shape open to the extracellular part. Molecular docking methods were used to identify DAPI and ASP binding sites on the surface and in the center of the protein cavity. Because our kinetics experiments combined with molecular docking indicated that there may be additional active sites in zebrafish Mate3, additional cytotoxicity experiments were performed and highly potent Mate3 interactors were identified from a set of 55 different environmental contaminants. Our results suggest that some of the identified interactors may be of environmental concern, as their interaction with Mate3 could lead to an impairment of its normal efflux function, making fish more sensitive to harmful substances commonly released into the aquatic environment. Finally, the quality of zebrafish Mate3 structures predicted by the AlphaFold2 algorithm opens up the possibility of successfully using this tool for in silico research on transport preferences of other Mate proteins.
斑马鱼Mate3是人类多药和毒素外排蛋白的六个共同直向同源物之一。它在雄性的肾脏、肠道、睾丸和大脑中高度表达。初步的相互作用研究表明它与外源性化合物相互作用,表明其在有毒化合物外排中发挥作用。在本研究中,我们旨在测试各种环境污染物与斑马鱼Mate3的相互作用。我们开发了一种稳定的斑马鱼Mate3细胞系,并使用DAPI和ASP作为荧光模型底物优化了高通量筛选测定法。为了深入了解Mate3蛋白的结构和功能,并将这些与DAPI和ASP转运测量结果相关联,我们使用AlphaFold2算法预测了其三维结构。获得了一个具有高每个残基置信度分数且有13个跨膜片段(TMs)的三维结构,其拓扑结构和相互定位具有Mate蛋白家族向细胞外部分开放的形状特征。分子对接方法用于识别蛋白质表面和蛋白腔内中心的DAPI和ASP结合位点。因为我们的动力学实验与分子对接相结合表明斑马鱼Mate3中可能存在其他活性位点,所以进行了额外的细胞毒性实验,并从一组55种不同的环境污染物中鉴定出了高效的Mate3相互作用物。我们的结果表明,一些已鉴定的相互作用物可能引起环境关注,因为它们与Mate3的相互作用可能导致其正常外排功能受损,使鱼类对通常释放到水生环境中的有害物质更加敏感。最后,由AlphaFold2算法预测的斑马鱼Mate3结构的质量为成功使用该工具对其他Mate蛋白的转运偏好进行计算机模拟研究开辟了可能性。