Crystal Structure of an O-acyltransfer Terminal Protein stDltD and Its Implications for dlt Operon-mediated D-alanylation of S. thermophilus
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1.1)National Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China;2.2)College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China;3.3)Shanghai Institute for Advanced Immunochemical Studies and School of Life Science and Technology, ShanghaiTech University, Shanghai 201210, China

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This work was supported by grants from the Chinese Academy of Sciences Pilot Strategic Science and Technology Projects B grant (XDB37030302) and The National Natural Science Foundation of China (31629002), the National Laboratory of Biomacromolecules.

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    Abstract:

    In bacteria, the acyl transmembrane modification of cell-surface polymers is a common feature to strengthen their pathogenic potential. The dlt operon-mediated D-alanylation of lipoteichoic acids (LTAs) is an important post-modification to adjust charge balance in Gram-positive bacteria. Four proteins of DltA/B/C/D were identified to be essential for LTA D-alanine incorporation. Though the process of D-alanine transfer by cytoplasmic DltA/DltC has been largely probed, transmembrane catalysis by MBOAT protein DltB and the terminal player DltD is yet to be defined. Here, the crystal structure of stDltD was determined from S. thermophilus at 2.94 ? resolution. On the basis of the structure comparison, DltD was considered as the terminal acyltransferase of the dlt operon, and it belonged to the SGNH-like family. An stDltD active center, including four blocks and a catalytic triad, conservatively exists in various Gram-positive pathogens. In addition, structural analysis showed that the stDltD catalytic center formed a strong positively charged groove docking with a glycerolphosphate molecule. Combined with previous reports, an updated working model was proposed for cross-membrane D-alanylation mediated by the dlt operon. The structural evidence provides more implications to clarify the biological function of stDltD and the process of transmembrane acyl modification.

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ZENG Qi, TIAN Li-Fei, LIU Yan-Ping, YAN Xiao-Xue, XU Wen-Qing. Crystal Structure of an O-acyltransfer Terminal Protein stDltD and Its Implications for dlt Operon-mediated D-alanylation of S. thermophilus[J]. Progress in Biochemistry and Biophysics,2021,48(9):1052-1062

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History
  • Received:January 19,2021
  • Revised:March 01,2021
  • Accepted:March 01,2021
  • Online: September 23,2021
  • Published: September 20,2021