Resultats de la cerca - Benjamin R. Lichman
- Mostrar 1 - 15 resultats de 15
-
1
-
2
-
3
-
4
Biocatalytic Strategies towards [4+2] Cycloadditions per Benjamin R. Lichman, Sarah E. O’Connor, Hajo Kries
Publicat 2019Revisão -
5
-
6
-
7
-
8
Enzymatic and Chemoenzymatic Three‐Step Cascades for the Synthesis of Stereochemically Complementary Trisubstituted Tetrahydroisoquinolines per Vanessa Erdmann, Benjamin R. Lichman, Jianxiong Zhao, Robert C. Simon, Wolfgang Kroutil, John M. Ward, Helen C. Hailes, Dörte Rother
Publicat 2017Artigo -
9
-
10
‘Dopamine‐first’ mechanism enables the rational engineering of the norcoclaurine synthase aldehyde activity profile per Benjamin R. Lichman, Markus Gershater, Eleanor D. Lamming, Thomas Pesnot, Altin Sula, N.H. Keep, Helen C. Hailes, John M. Ward
Publicat 2015Artigo -
11
-
12
A chromosome-level genome assembly reveals that a bipartite gene cluster formed via an inverted duplication controls monoterpenoid biosynthesis in Schizonepeta tenuifolia per Chanchan Liu, Samuel J. Smit, Jingjie Dang, Peina Zhou, Grant T. Godden, Zheng Jiang, Wukun Liu, Licheng Liu, Wei Lin, Jin‐Ao Duan, Qinan Wu, Benjamin R. Lichman
Publicat 2023Artigo -
13
Identification of adult nephron progenitors capable of kidney regeneration in zebrafish per Cuong Q. Diep, Dong-Dong Ma, Rahul C. Deo, Teresa M. Holm, Richard W. Naylor, Natasha Arora, Rebecca A. Wingert, Frank Bollig, Gordana Djordjević, Benjamin R. Lichman, Hao Zhu, Takanori Ikenaga, Fumihito Ono, Christoph Englert, Chad A. Cowan, Neil A. Hukriede, Robert I. Handin, Alan J. Davidson
Publicat 2011Artigo -
14
The evolutionary origins of the cat attractant nepetalactone in catnip per Benjamin R. Lichman, Grant T. Godden, John P. Hamilton, Lira Palmer, Mohamed O. Kamileen, Dongyan Zhao, Brieanne Vaillancourt, Joshua C. Wood, Miao Sun, Taliesin J. Kinser, Laura K. Henry, Carlos E. Rodríguez López, Natalia Dudareva, Douglas E. Soltis, Pamela S. Soltis, C. Robin Buell, Sarah E. O’Connor
Publicat 2020Artigo -
15
Phylogenomic Mining of the Mints Reveals Multiple Mechanisms Contributing to the Evolution of Chemical Diversity in Lamiaceae per Benoît Boachon, C. Robin Buell, Emily Crisovan, Natalia Dudareva, Nicolás García, Grant T. Godden, Laura K. Henry, Mohamed O. Kamileen, Heather R. Kates, Matthew B. Kilgore, Benjamin R. Lichman, Evgeny V. Mavrodiev, Linsey Newton, Carlos E. Rodríguez López, Sarah E. O’Connor, Pamela S. Soltis, Pamela S. Soltis, Brieanne Vaillancourt, Krystle Wiegert‐Rininger, Dongyan Zhao
Publicat 2018Artigo
Eines de cerca:
Matèries relacionades
Biology
Enzyme
Chemistry
Biochemistry
Stereochemistry
Catalysis
Evolutionary biology
Gene
Biocatalysis
Biosynthesis
Dopamine
Neuroscience
Organic chemistry
Reaction mechanism
Active site
Combinatorial chemistry
Computational biology
Genetics
Genome
Glycoside
Iridoid
Benzylisoquinoline
Biochemical engineering
Botany
Context (archaeology)
Engineering
Function (biology)
Gene cluster
Gene family
Lamiaceae