A structural mechanism for bacterial autotransporter glycosylation by a dodecameric heptosyltransferase family

Author:

Yao Qing1,Lu Qiuhe1,Wan Xiaobo2,Song Feng34,Xu Yue1,Hu Mo56,Zamyatina Alla7,Liu Xiaoyun56,Huang Niu2,Zhu Ping3,Shao Feng13

Affiliation:

1. Dr Feng Shao's Laboratory, National Institute of Biological Sciences, Beijing, China

2. Dr Niu Huang's Laboratory, National Institute of Biological Sciences, Beijing, China

3. National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China

4. Shandong Provincial Key Laboratory of Functional Macromolecular Biophysics, Institute of Biophysics, Dezhou University, Dezhou, China

5. Institute of Analytic Chemistry, College of Chemistry and Molecular Engineering, Peking University, Beijing, China

6. Synthetic Functional Biomolecules Center, College of Chemistry and Molecular Engineering, Peking University, Beijing, China

7. Department of Chemistry, University of Natural Resources and Life Sciences, Vienna, Austria

Abstract

A large group of bacterial virulence autotransporters including AIDA-I from diffusely adhering E. coli (DAEC) and TibA from enterotoxigenic E. coli (ETEC) require hyperglycosylation for functioning. Here we demonstrate that TibC from ETEC harbors a heptosyltransferase activity on TibA and AIDA-I, defining a large family of bacterial autotransporter heptosyltransferases (BAHTs). The crystal structure of TibC reveals a characteristic ring-shape dodecamer. The protomer features an N-terminal β-barrel, a catalytic domain, a β-hairpin thumb, and a unique iron-finger motif. The iron-finger motif contributes to back-to-back dimerization; six dimers form the ring through β-hairpin thumb-mediated hand-in-hand contact. The structure of ADP-D-glycero-β-D-manno-heptose (ADP-D,D-heptose)-bound TibC reveals a sugar transfer mechanism and also the ligand stereoselectivity determinant. Electron-cryomicroscopy analyses uncover a TibC–TibA dodecamer/hexamer assembly with two enzyme molecules binding to one TibA substrate. The complex structure also highlights a high efficient hyperglycosylation of six autotransporter substrates simultaneously by the dodecamer enzyme complex.

Funder

Howard Hughes Medical Institute

Ministry of Science and Technology of the People's Republic of China

National Natural Science Foundation of China

Chinese Academy of Sciences

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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