TY - JOUR
T1 - Structural insights into bacterial dimethylsulfoniopropionate import by BCCT-family transporters
AU - Zhang, Yu-Zhong
AU - Zhu, Wen-Jing
AU - Li, Kang
AU - Ding, Hai-Tao
AU - Hattori, Motoyuki
AU - Liu, Shuaimeng
AU - Ge, Chang
AU - Qin, Qi-Long
AU - Teng, Zhao-Jie
AU - Liu, Ning-Hua
AU - Cao, Hai-Yan
AU - Li, Chun-Yang
AU - Chen, Xiu-Lan
AU - Shen, Qing-Tao
AU - Todd, Jonathan
AU - Liu, Lu-Ning
AU - Wang, Peng
N1 - Data availability
The atomic coordinates and cryo-EM maps in this study for the DddT in closed substrate-free conformation (PDB entry 21FF; EMD-67623), DddT in closed DMSP-bound conformation (PDB entry 21FI; EMD-67626), DddT in closed substrate-free conformation in the presence of potassium ions and dimethylsulfoniopropionate (PDB entry 21FJ; EMD-67627), DddT G101D in substrate-free outward open conformation (PDB entry 21FH; EMD-67625), and DddT G101D in substrate-free inward open conformation (PDB entry 21FK; EMD-67628) have been deposited in the Protein Data Bank (http://www.rcsb.org) and the Electron Microscopy Data Bank (https://www.ebi.ac.uk/pdbe/emdb/).
The source data of this paper are collected in the following database record: biostudies:S-SCDT-10_1038-S44318-026-00798-w.
PY - 2026/5/8
Y1 - 2026/5/8
N2 - Dimethylsulfoniopropionate (DMSP) is a ubiquitous marine organosulfur compound central to microbial stress responses, chemotaxis, and nutrient cycling. Its catabolism produces dimethylsulfide (DMS), a climate-active gas, and plays a key role in the global sulfur cycle. However, the molecular basis of DMSP import, underpinning its microbial metabolism, remains poorly understood. Here, we identify and characterize the BCCT-family transporter DddT from Psychrobacter sp. D2, a marine gamma-proteobacterium that utilizes DMSP as a carbon source. DddT is essential for DMSP uptake and functions as a Na+-coupled symporter driven by the transmembrane sodium gradient. Using cryo-electron microscopy, we determined DddT structures in multiple conformational states, revealing its Na+-dependent transport mechanism involving two sodium ions, one coordinated by a previously uncharacterized binding site. Sequence analysis shows that DddT-like proteins with conserved sodium-binding features are widespread in marine bacteria, suggesting this Na+-coupled transport mechanism represents a broadly conserved feature of the BCCT family. Our findings provide mechanistic insights into sodium-driven substrate uptake and marine sulfur cycling.
AB - Dimethylsulfoniopropionate (DMSP) is a ubiquitous marine organosulfur compound central to microbial stress responses, chemotaxis, and nutrient cycling. Its catabolism produces dimethylsulfide (DMS), a climate-active gas, and plays a key role in the global sulfur cycle. However, the molecular basis of DMSP import, underpinning its microbial metabolism, remains poorly understood. Here, we identify and characterize the BCCT-family transporter DddT from Psychrobacter sp. D2, a marine gamma-proteobacterium that utilizes DMSP as a carbon source. DddT is essential for DMSP uptake and functions as a Na+-coupled symporter driven by the transmembrane sodium gradient. Using cryo-electron microscopy, we determined DddT structures in multiple conformational states, revealing its Na+-dependent transport mechanism involving two sodium ions, one coordinated by a previously uncharacterized binding site. Sequence analysis shows that DddT-like proteins with conserved sodium-binding features are widespread in marine bacteria, suggesting this Na+-coupled transport mechanism represents a broadly conserved feature of the BCCT family. Our findings provide mechanistic insights into sodium-driven substrate uptake and marine sulfur cycling.
UR - https://www.scopus.com/pages/publications/105038125256
U2 - 10.1038/s44318-026-00798-w
DO - 10.1038/s44318-026-00798-w
M3 - Article
SN - 0261-4189
VL - 45
SP - 4299
EP - 4320
JO - The EMBO Journal
JF - The EMBO Journal
IS - 12
ER -