[1] Chen Zhou, Tianjiao Chen, Andi Gu, Zongfeng Hu, Yan Li, Ting Gong, Jingjing Chen, Jinling Yang*, Ping Zhu*. Combining protein and metabolic engineering to achieve green biosynthesis of 12β-O-Glc-PPD in Saccharomyces cerevisiae. Green Chemistry, 2023, 25(4): 1356-1367.
[2] Fenglin Jiang, Chen Zhou, Yan Li, Haidong Deng, Ting Gong, Jingjing Chen, Tianjiao Chen, Jinling Yang*, Ping Zhu*. Metabolic engineering of yeasts for green and sustainable production of bioactive ginsenosides F2 and 3β,20S-Di-O-Glc-DM. Acta Pharmaceutica Sinica B, 2022, 12(7): 3167-3176.
[3] Zongfeng Hu, Andi Gu, Lan Liang, Yan Li, Ting Gong, Jingjing Chen, Tianjiao Chen, Jinling Yang*, Ping Zhu*. Construction and optimization of microbial cell factories for sustainable production of bioactive dammarenediol-II glucosides. Green Chemistry, 2019, 21: 3286-3299.
[4] Huichao Liang, Zongfeng Hu, Tingting Zhang, Ting Gong, Jingjing Chen, Ping Zhu, Yan Li, Jinling Yang*. Production of a bioactive unnatural ginsenoside by metabolically engineered yeasts based on a new UDP-glycosyltransferase from Bacillus subtilis. Metabolic Engineering, 2017, 44: 60-69.
[5] Chen Zhou, Ting Gong, Jingjing Chen, Tianjiao Chen, Jinling Yang*, Ping Zhu*. Production of a novel protopanaxatriol-type ginsenoside by yeast cell factories. Bioengineering, 2023,10
[6] Tingting Zhang, Ting Gong, Zongfeng Hu, Andi Gu, Jinling Yang*, Ping Zhu*. Enzymatic synthesis of unnatural ginsenosides using a promiscuous UDP-glucosyltransferase from Bacillus subtilis. Molecules, 2018, 23: 2797.
[7] Yang Jinling, Hu Zongfeng, Zhang Tingting, Gu Andi, Gong Ting, Zhu Ping. Progress on the studies of the key enzymes of ginsenoside biosynthesis. Molecules, 2018, 23: 589.
[8] Jinling Yang, Xinglun Li, Fenglin Jiang, Ting Gong, Jingjing Chen, Tianjiao Chen, Ping Zhu*. High-level soluble expression of human Cu,Zn superoxide dismutase with high activity in Escherichia coli. World Journal of Microbiology and Biotechnology, 2020, 36: 106.
[9] Yang Jinling, Zhu Ping, Cheng Guifang. Expression, purification and characterization of an analgesic peptide from Buthus martensii Karsch in Pichia pastoris. World Journal of Microbiology and Biotechnology, 2009, 25: 2053-2056.
[10] Wang Qinghua, Liang Lan, Liu Wancang, Gong Ting, Chen Jingjing, Hou Qi, Yang Jinling*. Enhancement of recombinant BmK AngM1 production in Pichia pastoris by regulating gene dosage, co-expressing with chaperones and fermenting in fed-batch mode. Journal of Asian Natural Products Research, 2017, 19(6): 581-594.
[11] Xiao Wei, Yang Jinling, Zhu Ping, Cheng Kedi. Non-support of species complex hypothesis of Cordyceps sinensis by targeted rDNA-ITS sequence analysis. Mycosystema, 2009, 28(5): 724-730.
[12] Yanhua Wen, Tianjiao Chen, Longyu Jiang, Li Li, Mengbo Guo, Yu Peng, Jingjing Chen, Fei Pei, Jinling Yang, Ruishan Wang, Ting Gong*, Ping Zhu*. Unusual (2R,6R)-bicyclo[3.1.1]heptane ring construction in fungal a-trans-bergamotene biosynthesis. iScience, 2022, 25: 104030.
[13] Guolin Zhou, Yong Li, Fei Pei, Ting Gong, Tianjiao Chen, Jingjing Chen, Jinling Yang, Qihan Li*, Shishan Yu*, Ping Zhu*. Chromosome-scale genome assembly of Rhododendron molle provides insights into its evolution and terpenoid biosynthesis. BMC Plant Biology, 2022, 22: 342.
[14] Liu Wenchao, Li Changqing, Zhu Ping, Yang Jinling. Phylogenetic diversity of culturable fungi associated with two marine sponges: Haliclona simulans and Gelliodes carnosa, collected from the Hainan Island coastal waters of the South China Sea. Fungal Diversity, 2010, 42: 1-15.
[15] 张婷婷, 梁会超, 巩婷, 胡宗风, 顾安頔, 杨金玲*, 朱平*. 人参糖基转移酶PgUGT74AE2催化生成新型人参三醇皂苷研究. 药学学报, 2018, 53(9): 1565-1570.
[16] 杨金玲, 高丽丽, 朱平*. 蝎毒镇痛活性肽基因BmK AngM1的密码子优化及其真核表达分析. 药学学报, 2012, 47(10): 1389-1393.
[17] 梁兰, 王庆华, 胡宗风, 朱平, 侯琦, 杨金玲*. 蝎毒活性肽 BmK AngMl 的定点突变及其抗炎活性研究. 药学学报, 2017, 52(6): 1007-1011.
[18] 梁会超, 高丽丽, 胡宗风, 巩婷, 陈晶晶, 杨金玲*, 朱平*. 人参达玛烯二醇-II 合酶在酿酒酵母中的表达、定位及功能研究. 药学学报, 2016, 51(6): 998-1003.
[19] 王庆华, 高丽丽, 梁会超, 杜国华, 巩婷, 杨金玲*, 朱平*. 利用反义RNA技术抑制酿酒酵母羊毛甾醇合酶基因的表达. 药学学报, 2015, 50(1): 118-122.
[20] 李星论, 巩婷, 陈晶晶, 陈天娇, 乔云明, 杨金玲*, 朱平*. 重组人源超氧化物歧化酶研究进展. 中国医药生物技术, 2019, 14(4): 352-357.