Kim Soomi, Bajaj Teena, Chabon Cole, Tablante Eric, Kulchinskaya Tatyana, Moon Tae Seok, Bajaj Ruchika
Stem Cell Technology Certificate Program, City College of San Francisco, USA.
Biotechnology Certificate Program, City College of San Francisco, USA.
Biodes Res. 2022 Sep 8;2022:9806979. doi: 10.34133/2022/9806979. eCollection 2022.
ABC transporters are molecular machines which power the solute transport using ATP hydrolysis. The structural biology of ABC transporters has been exploding for the last few years, and this study explores timelines and trends for various attributes such as structural tools, resolution, fold, sources, and group leaders. This study also evidences the significance of mammalian expression systems, advancements in structural biology tools, and the developing interest of group leaders across the world in the remarkably progressing field. The field started in 2002 and bloomed in 2016, and COVID years were really productive to the field. Specifically, the study explores 337 structures of 58 unique ABC transporters deposited in the PDB database from which P-glycoprotein has the largest number of structures. Approximately, 62% of total structures are determined at the resolution of 3-4 Å and 53% of structures belong to fold IV type. With progressive advancements in the field, the field is shifting from prokaryotic to eukaryotic sources and X-ray crystallography to cryoelectron microscopy. In the nutshell, this study uniquely provides the detailed snapshot of the field of structural biology of ABC transporters with real-time data.
ABC转运蛋白是利用ATP水解为溶质转运提供动力的分子机器。在过去几年里,ABC转运蛋白的结构生物学发展迅速,本研究探讨了各种属性的时间线和趋势,如结构工具、分辨率、折叠类型、来源和团队负责人。本研究还证明了哺乳动物表达系统的重要性、结构生物学工具的进步,以及世界各地团队负责人对这个快速发展领域日益增长的兴趣。该领域始于2002年,在2016年蓬勃发展,而新冠疫情期间该领域成果丰硕。具体而言,该研究探索了PDB数据库中存放的58种独特ABC转运蛋白的337个结构,其中P-糖蛋白的结构数量最多。大约62%的结构是在3-4埃的分辨率下确定的,53%的结构属于IV型折叠。随着该领域的不断进步,研究方向正从原核生物来源转向真核生物来源,从X射线晶体学转向冷冻电子显微镜。简而言之,本研究通过实时数据独特地提供了ABC转运蛋白结构生物学领域的详细概况。