University of Vienna, Department of Pharmaceutical Chemistry, Vienna, Austria.
Sci Rep. 2020 Apr 10;10(1):6241. doi: 10.1038/s41598-020-63189-z.
Creatine is a crucial metabolite that plays a fundamental role in ATP homeostasis in tissues with high-energy demands. The creatine transporter (CreaT, SLC6A8) belongs to the solute carrier 6 (SLC6) transporters family, and more particularly to the GABA transporters (GATs) subfamily. Understanding the molecular determinants of specificity within the SLC6 transporters in general, and the GATs in particular is very challenging due to the high similarity of these proteins. In the study presented here, our efforts focused on finding key structural features involved in binding selectivity for CreaT using structure-based computational methods. Due to the lack of three-dimensional structures of SLC6A8, our approach was based on the realization of two reliable homology models of CreaT using the structures of two templates, i.e. the human serotonin transporter (hSERT) and the prokaryotic leucine transporter (LeuT). Our models reveal that an optimal complementarity between the shape of the binding site and the size of the ligands is necessary for transport. These findings provide a framework for a deeper understanding of substrate selectivity of the SLC6 family and other LeuT fold transporters.
肌酸是一种至关重要的代谢物,在高能量需求组织中对 ATP 稳态起着根本作用。肌酸转运蛋白(CreaT,SLC6A8)属于溶质载体 6(SLC6)转运蛋白家族,更具体地说,属于 GABA 转运蛋白(GATs)亚家族。由于这些蛋白质具有高度相似性,因此理解 SLC6 转运蛋白特别是 GATs 中的特异性分子决定因素极具挑战性。在本研究中,我们的努力集中在使用基于结构的计算方法寻找涉及 CreaT 结合选择性的关键结构特征。由于缺乏 SLC6A8 的三维结构,我们的方法基于使用两个模板,即人类血清素转运蛋白(hSERT)和原核亮氨酸转运蛋白(LeuT),实现 CreaT 的两个可靠同源模型。我们的模型表明,结合位点的形状和配体的大小之间的最佳互补性对于转运是必要的。这些发现为深入了解 SLC6 家族和其他 LeuT 折叠转运蛋白的底物选择性提供了一个框架。