Publications

By year

Representative publications (2012-2017)

By: Source: Date:2018-11-08 Updating:2018-11-08 View:

1.  ZHEN Kang&CHEN Jian et al.Biotechnology Advances.2012,30(6),pp 1533-1542

Recent advances in microbial production of δ-aminolevulinic acid and vitamin B(12).

2.  LIU Long&DU Guocheng et al. CRITICAL REVIEWS IN BIOTECHNOLOGY.2012,32(4),pp  374-381

Microbial production of propionic acid from propionibacteria: Current state, challenges and perspectives.

3.  CHEN Xianzhong&ZHOU li et al. Biotechnology Advances.2013,31(8),pp  1200-1223

Metabolic engineering of Escherichia coli: A sustainable industrial platform for bio-based chemical production.

4.  CHEN Sheng&WU Jing et al.Biotechnology Advances.2013, 31(8),pp  1754-1767

Cutinase: Characteristics, preparation, and application.

5. ZHAO Yunning&JIANG Linghuo et al. JOURNAL OF MOLECULAR CELL BIOLOGY.2013,5(5),pp  336-344

ESCRT components regulate the expression of the ER/Golgi calcium pump gene PMR1 through the Rim101/Nrg1 pathway in budding yeast.

6.  CHEN Xiulai&LIU Liming et al. Trends in Biotechnology.2014,32(6),pp  337-343

Engineering redox balance through cofactor systerms.

7.  HAN Ruizhi&DU Guocheng et al.Biotechnology Advances.2014,32(2),pp  415-428

Recent advances in discovery, heterologous expression, and molecular engineering of cyclodextrin glycosyltransferase for versatile applications.

8.  LI Shubo&LIU Liming et al.Metabolic Engineering.2014,22(3),pp  32-39

Engineering of carboligase activity reaction in Candida glabrata for acetoin production.

9.  LIU Yanfeng&CHEN Jian et al.Metabolic Engineering.2014,23(5),pp  42-52

Modular pathway engineering of Bacillus subtilis for improved N-acetylglucosamine production.

10. ZHANG Xian&RAO Zhiming et al.Metabolic Engineering.2014,23(2),pp  34-41

The rebalanced pathway significantly enhances acetoin production by disruption of acetoin reductase gene and moderate-expression of a new water-forming NADH oxidase in Bacillus subtilis.

11.  LIU Yanfeng&DU Guocheng et al.Metabolic Engineering.2014,24(1),pp  61-69

Spatial modulation of key pathway enzymes by DNA-guided scaffold system and respiration chain engineering for improved Nacetylglucosamine production by Bacillus subtilis.

12.  GAO Lili&CHEN Jian et al.Metabolic Engineering.2014,24(6),pp  30-37

Stepwise metabolic engineering of Gluconobacter oxydans WSH-003 for the direct production of 2-keto-L-gulonic acid from D-sorbitol.

13. WANG Xiaoyuan&QuinnPetter J et al. BIOLOGICAL REVIEWS.2015,90(2),pp  408-427

Kdo(2)-lipid A: structural diversity and impact on immunopharmacology.

14.  YIN Xian&CHEN Jian et al. BIOTECHNOLOGY ADVANCES.2015,33(6),pp  830-841

Metabolic engineering in the biotechnological production of organic acids in the tricarboxylic acid cycle of microorganisms: Advances and prospects.

15. LIU Yanfeng&CHEN Jian et al. NATURE COMMUNICATIONS.2016,6(21),pp  11933

A dynamic pathway analysis approach reveals a limiting futile cycle in Nacetylglucosamine overproducing Bacillus subtilis.

16.  SHAO Minglong&RAO Zhiming et al. GREEN CHEMISTRY.2016,18(6),pp  1774-1784

Efficient testosterone production by engineered Pichia pastoris coexpressing human 17 beta-hydroxysteroid dehydrogenase type 3 and Saccharomyces cerevisiae glucose 6-phosphate dehydrogenase with NADPH regeneration.

17.  YANG Bin&LIU Liming et al. ACS ACTAL.2017,7(11),pp  7593-7599

Engineering of the Conformational Dynamics of Lipase To Increase Enantioselectivity.

18.  CHEN Xiulai&LIU Liming et al.CHEMICAL REVIEWS.2018,118(1),PP  4-72

DCEO Biotechnology: Tools To Design, Construct, Evaluate, and Optimize the Metabolic Pathway for Biosynthesis of Chemicals.

19. LIU Yanfeng&LIU Long et al. BIOTECHNOLOGY ADVANCES.2017,35(1),PP  20-30

Metabolic engineering of Bacillus subtilis fueled by systems biology: Recent advances and future directions.