论文著作:
(1) Rongzhen Zhang*, Jiawei Jiang, Junping Zhou, Yan Xu*, Rong Xiao, Xinhui Xia, Zhiming Rao*, Biofunctionalized “kiwifruit-assembly” of oxidoreductases in mesoporous ZnO/carbon nanoparticles for efficient asymmetric catalysis, Advanced Materials, 2018, 1705443. (IF2023=27.6)
(2) Junping Zhou, Rongzhen Zhang*, Taowei Yang, Qiaoli Liu, Junxian Zheng, Fang Wang, Fei Liu, Meijuan Xu, Xian Zhang, Zhiming Rao*, Relieving alosteric inhibition by designing active inclusion bodies and coating of the inclusion bodies with Fe3O4 nanomaterials for sustainable 2-oxobutyric acid production, ACS catalysis, 2018, 8: 8889-8901. (IF2023=11.3)
(3) Yaohui Li, Rongzhen Zhang*, Chi Wang, Farhad Forouhar, Oli Clarke, Sergey Vorobiev, Shikha Singh, Gaetano T. Montelione, Thomas Szyperski, Yan Xu*, John F. Hunt, Oligomeric interactions maintain active-site structure in a non-cooperative enzyme family, EMBO Journal, 2022, 41: e108368. (IF2023=11.4)
(4) Zhiwen Xi, Jingxin Rao, Xinyi Zhang, Zhiyong Liu, Mingyue Zheng, Lihong Li, Wenchi Zhang, Yan Xu1, Rongzhen Zhang* , Deciphering the key loop: Enhancing L-threonine transaldolase's catalytic potential, ACS Catalysis, 2024 14 (14): 10462-10474. (IF2023=11.3)
(5) Xiubing Xie, Runyi Huang, Wenchi Zhang, Rongzhen Zhang*, Cofactor-dependence alteration of 7β-hydroxysteroid dehydrogenase: Enhancing one-pot synthesis efficiency of chenodeoxycholic acid to ursodeoxycholic acid through cofactor self-recycling, International Journal of Biological Macromolecule, 2024, 280:136328 (IF2023=7.7)
(6) Zhiwen Xi, Yan Xu, Zhiyong Liu, Xinyi Zhang, Qiang Zhu, Lihong Li, Rongzhen Zhang*, Enhanced synthesis of chloramphenicol intermediate L-threo-p-nitrophenylserine using engineered L-threonine transaldolase and by-product elimination, International Journal of Biological Macromolecules, 2024, 263: 130310. (IF2023=7.7)
(7) Zhiwen Xi, Lihong Li, Zhiyong Liu, Xiaolong Wu, Yan Xu, Rongzhen Zhang*, Rational design of L-threonine transaldolase-mediated system for enhanced florfenicol intermediate production, Journal of Agricultural and Food Chemistry, 2024, 72 (1): 461-474. (IF2023=5.7)
(8) Lihong Li, Rongzhen Zhang*, Yan Xu, Wenchi Zhang, Comprehensive screening strategy coupled with structure-guided engineering of L-threonine aldolase from Pseudomonas putida for enhanced catalytic efficiency towards L-threo-4-methylsulfonylphenylserine, Frontiers in Bioengineering and Biotechnology, 2023, DO1: 10.3389/fbioe.2023.1117890. (IF2023=5.7)
(9) Rongzhen Zhang, Yan Xu*, Rong Xiao, Redesigning alcohol dehydrogenases/reductases for more efficient biosynthesis of enantiopure isomers, Biotechnology Advances, 2015, 33(8): 1671–1684. (IF2023=12.1)
(10) Yingqi Ruan, Rongzhen Zhang*, Yan Xu, Directed Evolution of Maltogenic Amylase from Bacillus licheniformis R-53: Enhancing Activity and Thermostability Improves Bread Quality and Extends Shelf Life, Food Chemistry, 2022, 381: 132222. (IF2023=8.5)
(11) Zhiyong Liu, Yan Xu, Wenchi Zhang, Rongzhen Zhang*, Structure-based rational design of hydroxysteroid dehydrogenases for improving and diversifying steroid synthesis, Critical Reviews in Biotechnology, 2023, 43(5):770-786. (IF2023=8.2)
(12) Yingqi Ruan, Yan Xu, Wenchi Zhang, Rongzhen Zhang*, A New Maltogenic Amylase from Bacillus licheniformis R-53 Significantly Improves Bread Quality and Extends Shelf Life, Food Chemistry, 2021, 344: 128599. 15 May 2021. (IF2023=8.5)
(13) Gongli Zong, Jiafang Fu, Peipei Zhang, Wenchi Zhang, Yan Xu, Guangxiang Cao, Rongzhen Zhang*, Use of elicitors to enhance or activate the antibiotic production in Streptomyces, Critical Reviews in Biotechnology, 2022, 42(8): 1260-1283. (IF2023=8.2)
(14) Yaohui Li, Rongzhen Zhang*, Yan Xu*, Structure-based mechanisms: On the way to apply alcohol dehydrogenases/reductases to organic-aqueous systems, International Journal of Biological Macromolecules, 2021, 168: 412-427. (IF=3.979) (IF2023=7.7)
(15) Liang Jin, Lihong Li, Lixian Zhou, Rongzhen Zhang*, Yan Xu, Jiming Li, Improving expression of Bovine lactoferrin N-lobe by promoter optimization and codon engineering in Bacillus subtilis and its antibacterial activity, Journal of Agriculture and Food Chemistry, 2019,67,9749-9756. (IF2023=5.7)