CTD公司
麦芽糖结合蛋白
单体
麦芽糊精
化学
二聚体
肠沙门氏菌
麦芽糖
生物
生物化学
重组DNA
大肠杆菌
基因
酶
有机化学
聚合物
地质学
融合蛋白
海洋学
喷雾干燥
作者
Lulu Wang,Tingting Bu,Xue Bai,Shanru He,Jie Zhang,Liming Jin,Baoquan Liu,Yuesheng Dong,Nam‐Chul Ha,Chunshan Quan,Ki Hyun Nam,Yongbin Xu
标识
DOI:10.1107/s2059798322003114
摘要
MalE is a maltose/maltodextrin-binding protein (MBP) that plays a critical role in most bacterial maltose/maltodextrin-transport systems. Previously reported wild-type MBPs are monomers comprising an N-terminal domain (NTD) and a C-terminal domain (CTD), and maltose-like molecules are recognized between the NTD and CTD and transported to the cell system. Because MBP does not undergo artificial dimerization, it is widely used as a tag for protein expression and purification. Here, the crystal structure of a domain-swapped dimeric MalE from Salmonella enterica (named SeMalE) in complex with maltopentaose is reported for the first time, and its structure is distinct from typical monomeric MalE family members. In the domain-swapped dimer, SeMalE comprises two subdomains: the NTD and CTD. The NTD and CTD of one molecule of SeMalE interact with the CTD and NTD of the partner molecule, respectively. The domain-swapped dimeric conformation was stabilized by interactions between the NTDs, CTDs and linkers from two SeMalE molecules. Additionally, a maltopentaose molecule was found to be located at the interface between the NTD and CTD of different SeMalE molecules. These results provide new insights that will improve the understanding of maltodextrin-binding MalE proteins.
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