Seryl-tRNA synthetase (SerRS), an essential enzyme for translation, also regulates vascular development. This “gain-of-function” has been linked to the UNE-S domain added to vertebrate SerRS during evolution. However, the significance of two insertions also specific to higher eukaryotic SerRS remains elusive. Here, we determined the crystal structure of human SerRS in complex with Ser-SA, an aminoacylation reaction intermediate analog, at 2.9 Å resolution. Despite a 70 Å distance, binding of Ser-SA in the catalytic domain dramatically leverages the position of Insertion I in the tRNA binding domain. Importantly, this leverage is specific to higher eukaryotes and not seen in bacterial, archaeal, and lower eukaryotic SerRSs. Deletion of Insertion I does not affect tRNA binding but instead reduce the catalytic efficiency of the synthetase. Thus, a long-range conformational and functional communication specific to higher eukaryotes is found in human SerRS, possibly to coordinate translation with vasculogenesis.
电邮:xuxl@hznu.edu.cn
电话:0571-28861723
邮编:311121
地址:浙江省杭州市余杭区仓前余杭塘路2318号
Copyright © 2021 杭州师范大学徐晓玲课题组 公安备案号:33011002011919 浙ICP备11056902号-1 技术支持:亿校云
地址:浙江省杭州市余杭塘路2318号
邮编:311121
电邮:xuxl@hznu.edu.cn 电话:0571-28861723
版权所有 © 2021 杭州师范大学徐晓玲课题组
公安备案号:33011002011919
浙ICP备11056902号-1
技术支持:亿校云