Upload Avatar (500 x 500)
Gang Fu
fu_g@tib.cas.cn
Chinese, English
Tianjin
University of Chinese Academy of Sciences
Life Sciences
  • 2007-09--2010-07 Master of Science: Nankai University
  • 2003-09--2007-07 Bachelor of Science: Shandong University, Weihai
  • 2012-08~Present - Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences - Associate Researcher
  • 2010-08~2012-07 - Tianjin Institute of Pharmaceutical Research - Research Intern
High-efficiency protein expression regulation system in Bacillus subtilis
Biomanufacturing of vitamin nutritional chemicals
  • Efficient Production of MK-7 by Metabolic Engineering in Bacillus subtilis, Gang Fu, 2022
  • Upgrading microbial strains for fermentation industry, Gang Fu, 2022
  • Going Beyond the Local Catalytic Activity Space of Chitinase Using a Simulation-Based Iterative Saturation Mutagenesis Strategy, Gang Fu, 2022
  • Developments of core technologies in industrial enzymes and green bioprocessing, Gang Fu, 2022
  • An operator-based expression toolkit for Bacillus subtilis enables fine-tuning of gene expression and biosynthetic pathway regulation, Gang Fu, 2022
  • Efficient heterologous expression of alkaline protease SubC in Bacillus subtilis, Gang Fu, 2021
  • Compensating Complete Loss of Signal Recognition Particle During Co-translational Protein Targeting by the Translation Speed and Accuracy, Gang Fu, 2021
  • Biosynthesis and applications of curdlan, Gang Fu, 2021
  • Signal Recognition Particle Suppressor Screening Reveals the Regulation of Membrane Protein Targeting by the Translation Rate, Gang Fu, 2021
  • Secretion exploration and heterologous expression of creatininase in Bacillus subtilis, Gang Fu, 2020
  • Hyper-secretion mechanism exploration of a heterologous creatinase in Bacillus subtilis, Gang Fu, 2020
  • Enhanced production of d-psicose 3-epimerase in Bacillus subtilis by regulation of segmented fermentation, Gang Fu, 2020
  • High-Efficiency Secretion and Directed Evolution of Chitinase BcChiA1 in Bacillus subtilis for the Conversion of Chitinaceous Wastes Into Chitooligosaccharides, Gang Fu, 2020
  • High-efficiency expression and secretion of human FGF21 in Bacillus subtilis by intercalation of a mini-cistron cassette and combinatorial optimization of cell regulatory components, Gang Fu, 2019
  • Systematic Screening of Optimal Signal Peptides for Secretory Production of Heterologous Proteins in Bacillus subtilis, Gang Fu, 2018
  • Optimization of thermostable α-amylase secretion by screening of optimal signal peptide in Bacillus subtilis, Gang Fu, 2017
  • High-Efficiency Secretion of beta-Mannanase in Bacillus subtilis through Protein Synthesis and Secretion Optimization, Gang Fu, 2017
  • A new maltose-inducible high-performance heterologous expression system in Bacillus subtilis, Gang Fu, 2017
  • Promoter Screening from Bacillus subtilis in Various Conditions Hunting for Synthetic Biology and Industrial Applications, Gang Fu, 2016
  • High-level intra- and extra-cellular production of D-psicose 3-epimerase via a modified xylose-inducible expression system in Bacillus subtilis, Gang Fu, 2016
  • A novel strategy for protein production using non-classical secretion pathway in Bacillus subtilis, Gang Fu, 2016
  • Combinatorial Sec pathway analysis for improved heterologous protein secretion in Bacillus subtilis: identification of bottlenecks by systematic gene overexpression, Gang Fu, 2015
  • Enhanced extracellular production of alpha-amylase in Bacillus subtilis by optimization of regulatory elements and over-expression of PrsA lipoprotein, Gang Fu, 2015
  • Cloning, characterization and production of a novel lysozyme by different expression hosts, Gang Fu, 2014
  • Cloning, Characterization, and Production of a Novel Lysozyme by Different Expression Hosts, Gang Fu, 2014
Bacillus Subtilis Protein Expression Regulation System Biomanufacturing Vitamins Nutritional Chemicals High-Efficiency Expression System Biotechnology Microbiology

Contact us

Let's talk!
* Required
* Required
* Required
* Invalid email address
By submitting this form, you agree that IoT ONE may contact you with insights and marketing messaging.
No thanks, I don't want to receive any marketing emails from IoT ONE.
Submit

Thank you for your message!
We will contact you soon.