姓名:李爽 职称:博士,教授 研究方向:合成生物学,代谢工程,酶工程 招生专业: 学术型博士:微生物学;工程博士:资源与环境;学术型硕士:生物学、发酵工程;专业硕士:生物与医药、药学; 电子邮箱:shuangli@scut.edu.cn |
2001.9-2006.7清华大学,化学工程系,生物化工,博士
1997.9-2001.7清华大学,化学工程系,化学工程与工艺,学士
2015.9-至今华南理工大8297至尊品牌游戏官方网站物科学与工程8297至尊品牌游戏官方网站,教授
2010.9-2015.8华南理工大8297至尊品牌游戏官方网站物科学与工程8297至尊品牌游戏官方网站,副教授
2012.9-2013.9美国加州大学洛杉矶分校(UCLA)化学与分子工程系 访问学者
2007.8-2010.8华南理工大8297至尊品牌游戏官方网站物科学与工程8297至尊品牌游戏官方网站,讲师
2006.8-2007.7广药集团广州拜迪生物医药有限公司,科研开发部部长
以发展合成生物学的方法为主要研究方向,建立合成生物学的关键技术平台。针对资源环境与人类健康等方面的需求,通过菌株筛选和改造,着重关注若干重要化学品的生物制造。在相关领域方法学建立方面有着扎实积累。
(1)利用合成生物学的工具,指导改造或合成新型的或改良的生物学体系(细胞工厂),以生产生物能源燃料及生物医药化学品。
(2)通过代谢途径(网络)不断的改造和优化,系统提高目标产物产量,或降低毒害中间产物的产生与积累。
(3)利用蛋白/酶改造技术,有针对性的改造细胞工厂内关键蛋白/酶,提升反应效率。
近年在相关领域发表高水平SCI文章30余篇,2015年以来他引1400余次,h指数18,单篇最高引用530余次,两篇文章被选为封面文章刊出。授权国际发明专利2项,授权中国发明专利16项,软件著作权2项,另申请PCT专利1项。参编英文专著2部,出版翻译书籍4部。近年科研经费到账500余万元。
◆ 2019年 广东特支计划“科技创新青年拔尖人才”
◆ 2017年 华南理工大学 第九届“我最喜爱的导师”
◆ 2012年 广州市珠江科技新星
◆ 2012年 广东省“千百十工程”校级青年学术骨干培养对象
◆ 2011年 Young Scientists Prize (Top 3), TWAS-ROESEAP Symposium on Industrial Biotechnology, in Beijing
1.开发设计的可物理诱导的大肠杆菌自动裂解体系,可实现大肠杆菌胞内酶的快速纯化和高通量筛。咽谌ㄗ酶鹗 DualSystems Biotech公司进行销售,商品名为QuickLyse pEAS1-a。
2.筛选的腈水合酶高产菌株,已授权转让给国内公司进行中试放大及相关产业化实施。
3.高产L-乳酸嗜热厌氧菌相关菌株授权转让给国内公司进行后续技术开发及相关产业化。
36. Liu T, Li W, Chen H, Wu T, Zhu C, Zhuo M, Li S*. Systematic optimization of HPO-CPR to boost (+)-nootkatone synthesis in engineered Saccharomyces cerevisiae. J Agr Food Chem. 2022, 70, 15548–15559. (JCR Q1, IF 5.895)
35. Zhu C, You X, Wu T. Li W, Chen H, Cha Y, Zhuo M, Chen B, Li S*. Efficient utilization of carbon to produce aromatic valencene in Saccharomyces cerevisiae using mannitol as the substrate. Green Chem, 2022, 11. (JCR Q1, IF 11.034)获得多家媒体平台报道,如中国生物技术发展中心等。
34. Cha Y, Li W, Wu T, You X, Chen H, Zhu C, Zhuo M, Chen B, Li S* Probing the Synergistic Ratio of P450/CPR To Improve (+)-Nootkatone Production in Saccharomyces cerevisiae. J Agric Food Chem 2022, 70: 815-825. (JCR Q1, IF 5.895)
33. Huang X, Yang G, Li S*, Wang H, Cao Y, Peng F, Yu H, 2022. Noble-metal-based high-entropy-alloy nanoparticles for electrocatalysis. Journal of Energy Chemistry 68, 721-751. (JCR Q1, IF 13.599)
32. Xiong J, Chen H, Liu R, Yu Hao, Zhuo M, Zhou T, Li S*, Tuning a bi-enzymatic cascade reaction in Escherichia coli to facilitate NADPH regeneration for ε-caprolactone production, Bioresour Bioprocessing 2021, 8:32. (JCR Q2, IF 4.983)
31. Wu, F., J. Ma, Y. Cha, D. Lu, Z. Li, M. Zhuo, X. Luo, S Li* and M. Zhu. Using inexpensive substrate to achieve high-level lipase A secretion by Bacillus subtilis through signal peptide and promoter screening. Process Biochem 2020, 99: 202-210. (JCR Q2, IF 3.757)
30.Zhu M, Zhang L, Yang F, Cha Y, Li S*, Zhuo M, Huang S, Li J. A recombinant β-mannanase from Thermoanaerobacterium aotearoense SCUT27: Biochemical characterization and its thermostability improvement. J Agr Food Chem 2020, 68: 818-825. (JCR Q1, IF3.571),封面文章.
29.Chen H, Zhu C, Zhu M, Xiong J, Ma H, Zhuo M, and Li S*. High production of valencene in Saccharomyces cerevisiae through metabolic engineering. Microb Cell Fact. 2019, 18:195. (JCR Q1,IF4.402)
28.Yuan P, Dong J, Zhao W, Zhuo M, Li S*, Huang S, and Li J. Qualitative and quantitative assessment of genotoxins using SRRz lysis reporter under the control of a newly designed SOS responsive promoter in Escherichia coli. RSC Advances. 2019, 9:35662-35670. (JCR Q2, IF3.049)
27.Huang S, Huang X, Li S, Zhu M, Zhuo M. MHC class I allele diversity in cynomolgus macaques of Vietnamese origin. PeerJ. 2019, 7:e7941. (JCR Q2, IF2.353)
26.Ye F, Liu S, Yang Y, Zhao T, Li S, Zhou T, et al. Identification of the major metabolites of (R)-salbutamol in human urine, plasma and feces using ultra high performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry. J Sep Sci. 2019, 42:3200-8.(JCR Q2, IF2.516)
25.Ouyang, X,Cha Y, Li W, Zhu C, Zhu M, Li S*, Zhuo M, Huang S and Li J. Stepwise engineering of Saccharomyces cerevisiae to produce (+)-valencene and its related sesquiterpenes. RSC Advances, 2019, 9:30171-30181. (JCR Q2, IF3.049)
24.Xu H, Tong N, Huang S, Zhou S, Li S, Li J, Zhang Y, Degradation of 2,4,6-trichlorophenol and determination of bacterial community structure by micro-electrical stimulation with or without external organic carbon source. Bioresour Technol 2018, 263:266-272. SCI 1区, IF=5.65
23.Xu T, Huang X, Li Z, Ki Lin C S, Li S*, Enhanced purification efficiency and thermal tolerance of Thermoanaerobacterium aotearoense β-Xylosidase through aggregation triggered by short peptides. J Agr Food Chem 2018, 66:4182-4188. SCI 1区, 封面文章.
22.Du C, Abdullah JJ, Greetham D, Fu D, Yu M, Ren L, Li S, Lu D. Valorization of food waste into biofertiliser and its field application. J Clean Prod 2018, 187:273-284. SCI 2区, IF=5.72
21.Zhu M, Fan W, Cha Y, Yang X, Lai Z,Li S*, Wang, X. Dynamic cell responses in Thermoanaerobacterium sp. under hyperosmotic stress. Sci Rep, 2017, 7:10088.
20.Yang X, Zhu M, Huang X, Lin CSK, Wang J, Li S*, Valorisation of mixed bakery waste in non-sterilized fermentation for l-lactic acid production by an evolved Thermoanaerobacterium sp. strain. Bioresour Technol, 2015, 198:47-54. SCI 1区, IF=5.65
19.Huang X, Li Z, Du C, Wang J, Li S*, Improvement expression and characterization of a multi-domain xylanase from Thermoanaerobacterium aotearoense SCUT27 in Bacillus subtilis. J Arg Food Chem, 2015, 63:6430-6439. SCI 1区
18.Yang F, Yang X, Li Z, Du C, Wang J, Li S*, Overexpression and characterization of a glucose-tolerant β-glucosidase from T. aotearoense with high specific activity for cellobiose. Appl Microbiol Biotechnol, 2015, 99:8903-8915. SCI 2区
17.Zhu M, Lu Y, Wang J, Li S*, Wang X, Carbon catabolite repression and the related genes of ccpA, ptsH and hprK in Thermoanaerobacterium aotearoense. PLoS ONE, 2015, 10:e0142121
16.Yang X, Huang A, Peng J, Wang J, Wang X, Lin Z*, Li S*, Self-assembly amphipathic peptides induce active enzyme aggregation that dramatically increases the operational stability of nitrilase, RSC Advances, 2014, 4: 60675-60684, SCI 3区
15.Lai Z, Zhu M, Yang X, Wang J, Li S* Optimization of key factors affecting hydrogen production from sugarcane bagasse by a thermophilic anaerobic pure culture. Biotechnol Biofuels 2014, 7:119. SCI 1区, IF=6.22
14.Ai H, Zhang J, Yang M, Yu P, Li S, Zhu M, Dong H, Wang S, Wang J: Draft Genome Sequence of an Anaerobic, Thermophilic Bacterium, Thermoanaerobacterium aotearoense SCUT27, Isolated from a Hot Spring in China. Genome Announc 2014, 2.
13.Yang X, Lai Z, Lai C, Zhu M, Li S*, Wang J*, Wang X: Efficient production of l-lactic acid by an engineered Thermoanaerobacterium aotearoense with broad substrate specificity. Biotechnol Biofuels 2013, 6:124. SCI 1区, IF=6.22
12.Xu W, Chooi YH, Choi JW,Li S, Vederas JC, Da Silva NA, Tang Y: LovG: the thioesterase required for dihydromonacolin L release and lovastatin nonaketide synthase turnover in lovastatin biosynthesis. Angew Chem Int Ed Engl 2013, 52:6472-6475.SCI 1区, IF=11.34
11.Li L, Ai H, Zhang S, Li S, Liang Z, Wu ZQ, Yang ST, Wang JF: Enhanced butanol production by coculture of Clostridium beijerinckii and Clostridium tyrobutyricum. Bioresour Technology 2013, 143:397-404. SCI 1区, IF=5.04
10.Liang ZX, Li L, Li S, Cai YH, Yang ST, Wang JF: Enhanced propionic acid production from Jerusalem artichoke hydrolysate by immobilized Propionibacterium acidipropionici in a fibrous-bed bioreactor. Bioprocess Biosyst Eng 2012, 35:915-921.
9.Li S, Yang X, Yang S, Zhu M, Wang X: Technology Prospecting on Enzymes: Application, Marketing and Engineering. Comput Struct Biotechnol J 2012, 2:e201209017. (higly citation)
8.Cai YH, Liang ZX, Li S, Zhu MJ, Wu ZQ, Yang ST, Wang JF: Bioethanol from fermentation of cassava pulp in a fibrous-bed bioreactor using immobilized Δldh, a genetically engineered Thermoanaerobacterium aotearoense. Biotechnol Bioproc Eng 2012, 17:1270-1277.
7.Cai Y, Lai C, Li S, Liang Z, Zhu M, Liang S, Wang J: Disruption of lactate dehydrogenase through homologous recombination to improve bioethanol production in Thermoanaerobacterium aotearoense. Enzyme Microb Tech 2011, 48:155-161.
6.Li S, Lai C, Cai Y, Yang X, Yang S, Zhu M, Wang J, Wang X: High efficiency hydrogen production from glucose/xylose by the ldh-deleted Thermoanaerobacterium strain. Bioresour Technol 2010, 101:8718-8724. SCI 1区IF=5.04
5.Lin Z, Li S, Chen Y: Identification of Viral Peptide Fragments for Vaccine Development. In Methods in Molecular Biology.Volume 515. Edited by Hicks BW. New York: Humana Press; 2009: 261-274.[Walker JM (Series Editor): Viral Applications of Green Fluorescent Protein ]. (Invited)
4.Chen Y, Li S, Chen TJ, Hua H, Lin ZL: Random dissection to select for protein split sites and its application in protein fragment complementation. Protein Sci 2009, 18:399-409.
3.Li S, Xu LH, Hua H, Ren CA, Lin ZL: A set of UV-inducible autolytic vectors for high throughput screening. J Biotechnol 2007, 127:647-652.
2. Xu LH, Li S, Ren C, Cai Z, Lin ZL: Heat-inducible autolytic vector for high-throughput screening. Biotechniques 2006, 41:319-322.
1.Li S, Cai Z, Chen Y, Lin Z: Dissection of SARS Coronavirus Spike Protein into Discrete Folded Fragments. Tsinghua Science and Technology 2006, 11:490-494.
1.Li S, Yang X (2016) Biofuel production from food wastes. In: Luque R, Lin CSK, Wilson K, Clark J (eds) Handbook of Biofuels Production. 2 ed. Woodhead Publishing, Oxford, UK
2.Lin Z, Li S, Chen Y (2009) Identification of Viral Peptide Fragments for Vaccine Development. In: Hicks BW (ed) Methods in Molecular Biology. Viral Applications of Green Fluorescent Protein vol 515. Humana Press, New York, pp 261-274
[1]发明专利:Li S, Zhuo M, Yuan P,. Genotoxic substance detection vector and detection method thereof. 国际专利2017393714,授权时间:2021.11.18
[2]发明专利:Li S,Lai Z, Wang J. A Thermophilic anaerobic Bacillus and a method for producing ethanol by using the same. 国际专利11201701615R,授权时间:2017.9.26
[3]发明专利:李爽,欧阳小丹, 察亚平, 朱晁谊. 生产瓦伦西亚烯的酿酒酵母工程菌及其构建方法与应用. 201910271558.6. 授权时间:2022.12.30
[4]发明专利:李爽,陈东莹, 李文, 朱晁谊. 氧化还原酶及其突变体在生物合成圆柚酮中的应用. 202111517500.9. 授权时间:2022.10.25
[5]发明专利:李爽,察亚平,卓敏,朱晁谊. 一种构建酿酒酵母裂解工程菌的重组载体及其应用. 201811019561.0. 授权时间:2021.7.20
[6]发明专利:李爽,樊吴迪. 一种b-甘露聚糖酶工程菌的筛选方法. 201710432097.7. 授权时间:2021.7.20
[7]发明专利:李爽, 徐天旺, 杨晓锋. 一种-木糖苷酶体内酶聚集体及其制备方法. 201610910450.3. 授权时间:2020.9.22
[8]发明专利:李爽,陈和锋,朱晁谊,朱牧孜. 一种酵母基因组编辑载体及其构建方法和应用. 201810064104.7,授权时间:2019.10.18
[9]发明专利:李爽,朱牧孜,黄雄亮,王菊芳. 一种嗜热厌氧杆菌及其在生产乳酸中的应用201510315114.X,授权时间:2019.1.29
[10]发明专利:李爽, 赖志城, 王菊芳. 一种嗜热厌氧杆菌及利用其生产乙醇的方法. 201410453513.8,授权时间:2017.2.1
[11]发明专利:李爽, 杨晓锋, 林章凛, 王菊芳, 王小宁. 基于自聚集短肽诱导的固定化腈水解酶及制备方法和应用. 201410019182.7,授权时间:2016.3.2
[12]发明专利:卓敏,李爽,胡日荣,吴柏华,彭晓春. 检测水溶性样品中重金属离子的全细胞生物传感器及其构建与应用. 201811018847.7, 授权时间:2021.1.29
[13]发明专利:王菊芳, 李林, 李爽, 于平儒. 一种双菌固定化厌氧发酵生产丁醇的装置和方法. 201210434676.2. 授权时间:2014.1.15
[14]发明专利:林章凛, 李爽, 徐丽华. 一种大肠杆菌自裂解方法及其专用载体及应用. 200610078952.0. 授权时间:2009.1.7
[15]发明专利:林章凛, 徐丽华, 李爽, 任川. 大肠杆菌自裂解方法及其专用载体与应用. 200610078951.6. 授权时间:2008.12.3
[16]发明专利:林章凛, 李爽, 蔡真. 一种制备能够独立表达的多肽片段的方法. 2004100001439. 授权时间:2006.5.24
[17]软件著作权:李爽,陈东莹,马玲玲,刘佩伶,董国忠,酿酒酵母高效特异性sgRNA靶点筛选、预测软件, 2022SR0369050, 登记时间:2021.11.11
[18]软件著作权:李爽,马浩,倪梦姣,卓敏. 基于Android智能手机的水样中重金属离子的半定量检测软件, 2019SR0090522, 登记时间:2018.6.1
[19]实用新型:李爽, 朱晁谊, 欧阳小丹. 一种连续生产乙醇的装置. 201721657272.4,授权时间:2018.9.7
[20]实用新型:王菊芳,李林,李爽,于平儒. 一种双菌固定化厌氧发酵生产丁醇的装置,201220575734.9. 授权时间:2012.11.2
1.李爽, 王菊芳: 化学合成生物学. 北京: 科学出版社; 2013.
2.王小宁, 李爽, 王永华: 工业酶——结构、功能与应用. 北京: 科学出版社; 2010.
3.李爽, 杨博: 白色生物技术. 北京: 科学出版社; 2009.
4.林章凛, 李爽: 工业酶——制备与应用. 北京: 化学工业出版社; 2006.
1.国家自然科学基金(面上项目), 酿酒酵母非单一基因组位点来源eccDNA进化路径及调控机制研究
2.国家重点研发计划,有机碳一原料高效利用和转化人工合成细胞的构建
3.国家自然科学基金(面上项目),产瓦伦西亚烯酿酒酵母细胞对CEN/ARS元件的应答响应研究
4.国家自然科学基金(面上项目),CcpA介导的嗜热氧杆菌碳代谢物阻遏机制解析及解除研究
5.国家自然科学基金(青年基金),关于改善甘油脱水酶机理性失活的研究
6.广东特支计划科技创新青年拔尖人才项目入选人员
7.广东省科技发展专项,产圆柚酮的酿酒酵母细胞工厂产能优化
8.广东省科技厅国际合作项目,原位分离耦合高密度发酵生产生物质乙醇的工艺开发
9.广东省省自然科学基金,嗜热厌氧杆菌碳代谢物阻遏机制解析及其解除方案构建研究
10.广州市产学研协同创新重大专项,农药残留遗传毒性物质的快速筛查技术开发
11.广州市珠江科技新星专项,农林废弃物生产乙醇和H2的代谢调控及发酵工艺研究
12.华工基本科研业务费,提升酿酒酵母细胞圆柚酮产能的途径强化研究