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The Science of the Total Environment|February 2, 2024
Microorganisms uptake zero-valent sulfur via membrane lipid dissolution of octasulfur and intracellular solubilization as persulfideTianqi Wang, Xiaoju Li, Honglei Liu, et al.Antioxidants (Basel, Switzerland)|July 27, 2022
Optimization of a Method for Detecting Intracellular Sulfane Sulfur Levels and Evaluation of Reagents That Affect the Levels in Escherichia coliQiaoli Yu, Mingxue Ran, Yuqing Yang, et al.Antioxidants (Basel, Switzerland)|August 26, 2022
A Caveat When Using Alkyl Halides as Tagging Agents to Detect/Quantify Reactive Sulfur SpeciesXiaohua Wu, Yuping Xin, Qingda Wang, et al.Redox Biology|October 23, 2021
Sulfide-quinone oxidoreductase is required for cysteine synthesis and indispensable to mitochondrial healthXi Zhang, Yuping Xin, Zhigang Chen, et al.The Science of the Total Environment|May 29, 2023
A common mechanism for rapid transfer of zero-valent sulfur between microbial cellsTianqi Wang, Guomei Zhong, Honglei Liu, et al.Biodegradation|August 25, 2018
H2S biotreatment with sulfide-oxidizing heterotrophic bacteriaNingke Hou, Yongzhen Xia, Xia Wang, et al.Microbial Biotechnology|August 11, 2020
Sulfane sulfur-activated actinorhodin production and sporulation is maintained by a natural gene circuit in Streptomyces coelicolorTing Lu, Qun Cao, Xiuhua Pang, et al.Applied and Environmental Microbiology|September 16, 2018
The Complete Pathway for Thiosulfate Utilization in Saccharomyces cerevisiaeZhigang Chen, Xi Zhang, Huanjie Li, et al.Analytical Chemistry|May 19, 2025
Detection of Protein Polysulfidation Using a β-(4-Hydroxyphenyl)ethyl Iodoacetamide-Derived Biotin Tag HPBYuping Xin, Xinyue Zhang, Qingda Wang, et al.Frontiers in Microbiology|March 16, 2019
Escherichia coli Uses Separate Enzymes to Produce H2S and Reactive Sulfane Sulfur From L-cysteineKai Li, Yufeng Xin, Guanhua Xuan, et al.Pageof 8