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Ming Lv
lvming@qibebt.ac.cn
Chinese, English, Korean
Shandong
University of Chinese Academy of Sciences
Life Sciences
  • 2007-03--2010-02 Ph.D.: Pusan National University
  • 2004-09--2007-02 Master's: Pusan National University
  • 2000-09--2004-06 Bachelor's: Yantai University
  • 2013-05~2013-11 - Kansas State University - Postdoctoral Researcher
  • 2011-05~2013-05 - Pusan National University - Postdoctoral Researcher
  • 2010-07~2011-04 - New York University - Postdoctoral Researcher
  • Qingdao Laoshan District 'Mountain and Sea Talent' (2015): City-level
  • Pusan University Excellent Academic Award (2009): Research Institute (School)
  • Pusan University Natural Science College Excellent Academic Award (2009): Research Institute (School)
Screening and optimization of thermophilic lignocellulose-degrading enzymes
Physiological and biochemical research of thermophilic microorganisms degrading lignocellulose
Bioenergy and biotransformation
  • Boosting the Microbial Electrosynthesis of Acetate from CO2 by Hydrogen Evolution Catalysts of Pt Nanoparticles/rGO, Ma, Xin, Zhang, Guoqiang, Li, Fengting, Jiao, Mingyang, Yao, Shunyu, Chen, Zhipeng, Liu, Ziyong, Zhang, Yongyu, Lv, Ming, Liu, Licheng, 2021
  • Combinations of alkaline hydrogen peroxide and lithium chloride/N,N-dimethylacetamide pretreatments of corn stalk for improved biomethanation, Ali, Nasir, Hamouda, Hamed, I, Su, Hang, Li, FuLi, Lu, Ming, 2020
  • Exploration of Two Pectate Lyases from Caldicellulosiruptor bescii Reveals that the CBM66 Module Has a Crucial Role in Pectic Biomass Degradation, Hamouda, Hamed, I, Ali, Nasir, Su, Hang, Feng, Jie, Lu, Ming, Li, FuLi, 2020
  • Emerging technologies for the pretreatment of lignocellulosic materials for bio-based products, Ali, Nasir, Zhang, Quan, Liu, ZiYong, Li, FuLi, Lu, Ming, Fang, XiangChen, 2020
  • 嗜热厌氧菌Caldicellulosiruptor sp.F32中降解β-1,3-1,4葡聚糖水解酶的协同性分析及糖基化对F32EG5热稳定性影响, 冯杰, Hamed, IHamouda, Nasir, Ali, 王雨铭, 张培玉, 吕明, 2019
  • Substitution of one calcium-binding amino acid strengthens substrate binding in a thermophilic alginate lyase, Wang, Bing, Ji, ShiQi, Ma, XiaoQing, Lu, Ming, Wang, LuShan, Li, FuLi, 2018
  • 热解纤维素菌属F32中乙酰木聚糖酯酶Axe7的表征, 吕明, 2017
  • Two Distinct α- l -Arabinofuranosidases in Caldicellulosiruptor Species Drive Degradation of Arabinose-Based Polysaccharides, Saleh Mohammad Abu, Han WenJie, Lu Ming, Wang Bing, Li Huayue, Kelly Robert M, Li FuLi, 2017
  • 难处理金银精矿生物氧化—氰化浸金试验研究, 吕明, 2016
  • 糖基化对Caldicellulosiruptor sp. F32中内切型木聚糖酶热稳定性的影响, 王灵, 韩文杰, 孟冬冬, 朱静, 李福利, 吕明, 2016
  • 微生物技术在金矿提金中的应用与展望, 韩文杰, 吕明, 周同, 张培玉, 2016
  • Direct bioconversion of brown algae into ethanol by thermophilic bacterium Defluviitalea phaphyphila, Ji, ShiQi, Wang, Bing, Lu, Ming, Li, FuLi, 2016
  • Depiction of carbohydrate-active enzyme diversity in Caldicellulosiruptor sp F32 at the genome level reveals insights into distinct polysaccharide degradation features, Meng, DongDong, Ying, Yu, Zhang, KunDi, Lu, Ming, Li, FuLi, 2015
  • Defluviitalea phaphyphila sp. nov., a Novel Thermophilic Bacterium That Degrades Brown Algae, 吕明, 2015
  • Production of disulfide bond-rich peptides by fusion expression using small transmembrane proteins of Escherichia coli, Chang, Ziwei, Lu, Ming, Ma, Yunqi, Kwag, DongGeon, Kim, SeoHyun, Park, JiMin, Nam, BoHye, Kim, YoungOk, An, CheulMin, Li, Huayue, Jung, Jee H, Park, JangSu, 2015
  • Distinct roles for carbohydrate-binding modules of glycoside hydrolase 10 (GH10) and GH11 xylanases from Caldicellulosiruptor sp. strain F32 in thermostability and catalytic efficiency, Meng, D. D., Ying, Y., Chen, X. H., Lu, M., Ning, K., Wang, L. S., Li, F. L., 2015
  • Protonation Behavior of Histidine during HSF1 Activation by Physiological Acidification, Lu, Ming, Park, JangSu, 2015
  • Potential role of HSP90 in mediating the interactions between estrogen receptor (ER) and aryl hydrocarbon receptor (AhR) signaling pathways, Chang, Ziwei, Lu, Ming, Kim, SoSun, Park, JangSu, 2014
  • Functional expression of Carassius auratus cytochrome P4501A in a novel Shewanella oneidensis expression system and application for the degradation of benzoa pyrene, Chang, Ziwei, Lu, Ming, Shon, KwangJae, Park, JangSu, 2014
  • Molecular characterization of the aryl hydrocarbon receptor (AhR) pathway in goldfish (Carassius auratus) exposure to TCDD: The mRNA and protein levels, Lu, Ming, Chang, Ziwei, Bae, MinJi, Oh, Seung Min, Chung, KyuHyuck, Park, JangSu, 2013
  • Histidine (His83) is Essential for Heat Shock Factor 1 (HSF1) Activation in Protecting against Acid pH Stress, Lu, Ming, Chang, Ziwei, Park, JangSu, 2013
  • Roles of His(101) in DNA-Binding Domain of Human Heat Shock Factor 1 Under Acid pH Environment, Lu, Ming, Kwon, Bobae, Chang, Ziwei, Park, HyeonGyeong, Park, JangSu, 2012
  • Functional HSF1 requires aromatic-participant interactions in protecting mouse embryonic fibroblasts against apoptosis via G2 cell cycle arrest, Chang, Ziwei, Lu, Ming, Park, SungMin, Park, HyunKyung, Kang, Ho Sung, Pak, Youngshang, Park, JangSu, 2012
  • Influence of divalent metal ions on E2-induced ER pathway in goldfish (Carassius auratus) hepatocytes, Chang, Ziwei, Lu, Ming, Park, SungMin, Park, HyunKyung, Kang, Ho Sung, Pak, Youngshang, Park, JangSu, 2011
  • Estrogenic Response in Male Bullfrog (Rana catesbeiana) Hepatocytes After Single or Combined Exposure to Cadmium (Cd) and 17beta-Estradiol (E2), Lee, Keun Woo, Chang, Ziwei, Oh, BeomSeok, Lu, Ming, Park, JangSu, 2010
  • Zn2+ in Replication Protein A Is Required for Its Full Activities of Single-Stranded DNA-Binding and DNA Replication, 吕明, 2009
  • Environmental estrogenic effects and gonadal development in wild goldfish (Carassius auratus), Li, ChunRi, Lee, SangHoon, Kim, SoSun, Kim, Andre, Lee, Keun Woo, Lu, Ming, Kim, HeeEun, Kwak, ImJung, Lee, YunJu, Kim, DongKyoo, Lee, JungSick, Kang, ShinWon, Huh, MinDo, Chung, KyuHyuck, Park, JangSu, 2009
  • Alpha-helix 1 in the DNA-binding domain of heat shock factor 1 regulates its heat-induced trimerization and DNA-binding, Lu, Ming, Sohn, KwangJea, Kim, SiWon, Li, ChunRi, Kim, Suhkmann, Kim, DongKyoo, Park, JangSu, 2009
  • Aromatic-Participant Interactions Are Essential for Disulfide-Bond-Based Trimerization in Human Heat Shock Transcription Factor 1, Lu, Ming, Lee, YunJu, Park, SungMin, Kang, Ho Sung, Kang, Shin Won, Kim, Suhkmann, Park, JangSu, 2009
  • Two distinct disulfide bonds formed in human heat shock transcription factor 1 act in opposition to regulate its DNA binding activity, Lu, Ming, Kim, HeeEun, Li, ChunRi, Kim, Sol, Kwak, ImJung, Lee, YunJu, Kim, SoSun, Moon, JiYoung, Kim, Cho Hee, Kim, DongKyoo, Kang, Ho Sung, Park, JangSu, 2008
  • Two functional domains of human heat shock factor 1 have different effects on its DNA-binding activity through redox changes, Lu, Ming, Kim, HeeEun, Li, ChunRi, Hwang, YunJeong, Kim, Sol, Kwak, ImJung, Lee, YunJu, Kim, SoSun, Kang, ShinWon, Park, NamGyu, Kim, DongKyoo, Kang, Ho Sung, Park, JangSu, 2007
Thermophilic Lignocellulose Enzymes Screening Optimization Microorganisms Physiological Biochemical Bioenergy Biotransformation

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