日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Divergent multifunctional P450s-empowered biosynthesis of bioactive tripterifordin and cryptic atiserenoids in Aconitum implies convergent evolution

乌头中由多功能P450酶驱动的活性雷公藤内酯和隐性阿替烯类化合物的多样化生物合成表明趋同进化

Luo, Fei; Zhou, Qian; Chen, Feilong; Liu, Xinyu; Chiu, Tsan-Yu; Zhu, Guo-Yuan; Huang, Ancheng C

NAD+ deficiency primes defense metabolism via 1O2-escalated jasmonate biosynthesis in plants

NAD+ 缺乏通过 1O2 促进植物中的茉莉酸生物合成来促进防御代谢

Yechun Hong #, Zongjun Yu #, Qian Zhou, Chunyu Chen, Yuqiong Hao, Zhen Wang, Jian-Kang Zhu, Hongwei Guo, Ancheng C Huang

The cytosolic aminotransferase VAS1 coordinates aromatic amino acid biosynthesis and metabolism

胞质氨基转移酶VAS1协调芳香族氨基酸的生物合成和代谢

Jie Wu,Yanhong Chen,Yuxin Huang,Bingbing Hao,Shengkun Dai,Lingling Zhao,Zhehui Zhao,Cuihuan Zhao,Limin Zhang,Yunhai Li,Xuexia Xu,Nan Li,Ancheng C Huang,Jiahai Zhou,Minjia Tan,Wentao Zhu,Qiao Zhao

Biosynthesis of saponin defensive compounds in sea cucumbers

海参中皂苷防御化合物的生物合成

Ramesha Thimmappa, Shi Wang #, Minyan Zheng #, Rajesh Chandra Misra, Ancheng C Huang, Gerhard Saalbach, Yaqing Chang, Zunchun Zhou, Veronica Hinman, Zhenmin Bao, Anne Osbourn

Chemical genetic screening identifies nalacin as an inhibitor of GH3 amido synthetase for auxin conjugation

化学遗传筛选鉴定出纳拉辛是生长素结合的GH3酰胺合成酶抑制剂。

Xie, Yinpeng; Zhu, Ying; Wang, Na; Luo, Min; Ota, Tsuyoshi; Guo, Ruipan; Takahashi, Ikuo; Yu, Zongjun; Aizezi, Yalikunjiang; Zhang, Linlin; Yan, Yan; Zhang, Yujie; Bao, Hongyu; Wang, Yichuan; Zhu, Ziqiang; Huang, Ancheng C; Zhao, Yunde; Asami, Tadao; Huang, Hongda; Guo, Hongwei; Jiang, Kai

Diverged Plant Terpene Synthases Reroute the Carbocation Cyclization Path towards the Formation of Unprecedented 6/11/5 and 6/6/7/5 Sesterterpene Scaffolds

不同的植物萜烯合成酶改变了碳正离子环化路径,从而形成前所未有的 6/11/5 和 6/6/7/5 倍半萜骨架

Huang, Ancheng C; Hong, Young J; Bond, Andrew D; Tantillo, Dean J; Osbourn, Anne

Unearthing a sesterterpene biosynthetic repertoire in the Brassicaceae through genome mining reveals convergent evolution

通过基因组挖掘揭示十字花科植物中倍半萜生物合成途径,展现了趋同进化现象。

Huang, Ancheng C; Kautsar, Satria A; Hong, Young J; Medema, Marnix H; Bond, Andrew D; Tantillo, Dean J; Osbourn, Anne