牛康乐

-
- 性别:男
- 毕业院校:山东大学
- 学历:研究生(博士后)
- 学位:博士生
- 在职信息:在职
- 所在单位:微生物技术研究
院(微生物改造技术全国重点实验室)
- 入职时间: 2021-01-06
- 所属院系:
微生物技术研究院
- 办公地点:第周苑A座233房间
- 电子邮箱:8c99e3b33f07497439371a14000abd8520d44c048316700ceaaa39fbc2f90eb924b6a146ad19204b90d20b428d2e46fce1b38e165741f9ff0beecb1de586416e0a806d0d7c539c4db32f0e481dcb79bc19f98678b904989d7fc40c246c16b71213c08c680a114a65cdefbd2bf8b7cfefc57389d9f773045c27c2d4dabef2b2ab
访问量:
-
[1]
牛康乐.
Engineering region flexibility of cellobiohydrolase I for efficient hydrolysis of cellulose based on molecular dynamics simulation.
Industrial Crops and Products,
2024.
-
[2]
牛康乐.
One-pot synthesis of γ-cyclodextrin of high purity from non-food cellulose via an in vitro ATP-free synthetic enzymatic biosystem.
Carbohydrate polymers,
123735,
2025.
-
[3]
.
Artificial trimerization of β-glucosidase for enhanced thermostability and activity via computational redesign.
international journal of biological macromolecules,
138275,
2025.
-
[4]
马维.
Key amino acid residues govern the substrate selectivity of the transporter Xltr1p from Trichoderma reesei for glucose, mannose, and galactose.
Engineering Microbiology,
4,
2024.
-
[5]
李凤仪.
Reprogramming the Metabolic Network in Kluyveromyces lactis with a Transcriptional Switch for De Novo Lacto-<i>N</i>-biose Synthesis.
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY,
71,
9031,
2023.
-
[6]
李凤仪.
Reprogramming the Metabolic Network in Kluyveromyces lactis with a Transcriptional Switch for De Novo Lacto-N-biose Synthesis.
Journal of Agricultural and Food Chemistry,
71,
9031,
2023.
-
[7]
方诩.
Alleviating nonproductive adsorption of lignin on CBM through the addition of cationic additives for lignocellulosic hydrolysis.
ACS Applied Bio Materials,
2253,
2022.
-
[8]
牛康乐.
A novel strategy for efficient disaccharides synthesis from glucose by beta-glucosidase (vol 7, 45, 2020).
BIORESOURCES AND BIOPROCESSING,
9,
2022.
-
[9]
杜志强.
Driving an in vitro multienzymatic cascade of laminaribiose biosynthesis from non-food cellulose with balancing the precursor supply.
Industrial Crops and Products,
182,
114878,
2022.
-
[10]
方诩.
Effect of Fe2+ addition on anammox consortia, nitrogen removal performance and functional genes analysis during start-up of anammox process.
Journal of Water Process Engineering,
102251,
2021.
-
[11]
韩丽娟.
Redesigning transcription factor Cre1 for alleviating carbon catabolite repression in Trichoderma reesei.
Synth Syst Biotechnol,
5,
230,
2020.
-
[12]
韩丽娟.
Precision Engineering of the Transcription Factor Cre1 inHypocrea jecorina(Trichoderma reesei) for Efficient Cellulase Production in the Presence of Glucose.
Frontiers in Bioengineering and Biotechnology,
8,
2020.
-
[13]
牛康乐.
A novel strategy for efficient disaccharides synthesis from glucose by beta-glucosidase.
Bioresources and Bioprocessing,
7,
2020.
-
[14]
方诩.
Lacto-N-biose synthesis via a modular enzymatic cascade with ATP regeneration.
iScience,
102236,
2021.