av解说

Hongzhi Tang

Selected Publications

  • •  

    Su C.†., Cui H. T.†., Wang W. W.†., Liu Y., Cheng Z. Y., Wang C., Yang M. Q., Qu L. W., Li Y., Cai Y. J., He S. Y., Zheng J X., Zhao P. P., Xu P., Dai J. B.*, and Hongzhi Tang*. 2025. Bioremediation of complex organicpollutants by engineered Vibrio natriegens. Nature, 1-10. //doi.org/10.1038/s41586-025-08947-7.

    •  

    Liu G. Q†., Zhao Y. L†., He F. Y., Zhang P., Ouyang X. Y., Tang H. Z.*, and Xu P. 2021. Structure-guided insights into heterocyclic ring-cleavage catalysis of the non-heme Fe (II) dioxygenase NicX. Nat. Commun. 12(1301): 1-10.

    •  

    Huang Y. Q., Wen L. Y., Zhang L. G., Xu J. J., Wang W. W., Hu H. Y., Xu P., Li Z., and Tang H. Z.*. 2023. Community-integrated multi-omics facilitates screening and isolation of the organohalide dehalogenation microorganism. The Innovation 4(1):100355, 1-8.

    •  

    Liu H., Zhang LG., Wang W. W., Hu H. Y., Ouyang X. Y., Xu P., and Tang H. Z.*. 2023. An intelligent synthetic bacterium for chronological toxicant detection, biodegradation, and its subsequent suicide. Adv. Sci. 2304348:1-11.

    •  

    Hu H. Y.†., Xu Z. Y.†., Zhang Z. Y., Song P. Z., Stull F., Xu P., Hongzhi Tang and Hongzhi Tang*. 2024. Rational design of a flavoenzyme for aerobic nicotine catabolism. mBio 15(10):1-20.

  • •  

    Guo L. H.†, Ouyang X. Y.,† Wang W. W., Qiu X. Y., Zhao Y. L., Xu P., and Hongzhi Tang*. 2024. Fine-tuning an aromatic ring-hydroxylating oxygenase to degrade high molecular weight polycyclic aromatic hydrocarbon. J. Biol. Chem. 300(6):1-12.

    •  

    Wang W. W†., Li Q. G.†, Zhang L. G., Cui J., Yu H., Wang X. Y., Ouyang X. Y., Tao F., Xu P., and Tang H. Z.*. 2021. Genetic mapping of highly versatile and solvent-tolerant Pseudomonas putida B6-2 (ATCC BAA-2545) as a ‘superstar' for mineralization of PAHs and dioxin-like compounds. Environ. Microbiol. 23(8):4309-4325.

    •  

    Zhou Z. K†., Tang H. Z.†*, Wang W. W., Zhang L. G., Su F., Wu Y. T., Bai L. Q., Li S. C., Yuhui Sun Y. H., Tao F., and Xu P*. 2021. A cold shock protein promotes high-temperature microbial growth through binding to diverse RNA species. Cell Discov. 7:1-12.

    •  

    Hu H. Y., Wang L. J., Wang W. W., Wu G., Tao F., Xu P., Deng Z. X., and Tang H. Z.*. 2019. Regulatory mechanism of nicotine degradation in Pseudomonas putida. mBio 10(3):1-13.

    •  

    Zhang K. Z., Wu G., Tang H. Z*., Hu C. M., Shi T., and Xu P*. 2017. Structural basis for the transcriptional repressor NicR2 in nicotine degradation from Pseudomonas. Mol. Microbiol., 103(1):165-180.