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A model for drug transport across two membranes of Gram-negative bacteria by an MFS tripartite assembly

Nature Communications. 2022-05; 
Zhaojun Zhong; Tuerxunjiang Maimaiti; Matthew L. Jackson; Rui Dong; Xueyan Gao; Qing Ouyang; Wenqian Wang; Jinliang Guo; Shangrong Li; Wenyu Shang; Huajun Liu; Hongnian Jiang; Shuo Zhang; Ulrich Zachariae; Ben F. Luisi; Yanjie Chao; Dijun Du
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Protein and Antibody Isolation conducted using a HiTrap Desalting column (Cytiva, USA). The 6 His-tagged EmrAB-TolC complex was further purified using ANTI-FLAG M2 affinity resin (GenScript, Nanjing, China). The resin was prepared by sequential washing with glycine HCl (pH 3.5) and Buffer-I. The protein solution and resin were mixed, gently Get A Quote

摘要

Transport of proteins and small molecules across cellular membrane is crucial for bacterial interaction with the environment and survival against antibiotics. In Gram-negative bacteria that possess two layers of membranes, specialized macromolecular machines are required to transport substrates across the cell envelope, often via an indirect stepwise process. The major facilitator superfamily (MFS)-type tripartite efflux pumps use proton electrochemical gradient to extrude drugs in diverse bacterial species, but the architecture of the assembly and structural mechanisms remain elusive. A representative MFS-type tripartite efflux pump, EmrAB-TolC, mediates resistance to multiple antimicrobial drugs through proto... More

关键词

Cryoelectron microscopy, Membrane proteins, Bacteria