Sortase A-mediated on-resin peptide cleavage and in situ ligation: an efficient one-pot strategy for the synthesis of functional peptides and proteins
Literature Information
Xiaozhong Cheng, Tao Zhu, Haofei Hong, Zhifang Zhou, Zhimeng Wu
Sortase A was firstly found to recognize a PEGA resin supported peptide donor containing a LPXTG motif and to ligate with a suitable acceptor containing oligo-glycine to afford conjugates in one-pot. This approach combining enzymatic on-resin cleavage, activation and in situ ligation, was employed to synthesize dual functional peptides, modify peptides with lipids, biotin and PEG, as well as protein N-terminal labeling in high efficiency.
Related Literature
Exploring the sloped-to-peaked S2/S1 seam of intersection of thymine with electronic structure and direct quantum dynamics calculations
David Asturiol, Graham A. Worth, Michael A. Robb, Lluís Blancafort
DOI: 10.1039/C001556C
Structure and dynamics of electrical double layers in organic electrolytes
Guang Feng, Jingsong Huang, Bobby G. Sumpter, Vincent Meunier, Rui Qiao
DOI: 10.1039/C000451K
A method to rapidly predict the charge injection rate in dye sensitized solar cells
Daniel R. Jones, Alessandro Troisi
DOI: 10.1039/B926157E
Theoretical study of the structural and electronic properties of the Fen(C6H6)m, n ≤ 2; m ≤ 2 complexes
Israel Valencia, Miguel Castro
DOI: 10.1039/B922847K
Dimerization of ion radicals in ionic liquids. An example of favourable “Coulombic” solvation
DOI: 10.1039/B920552G
Clusters of atmospheric relevance: H2O/HCl/HNO3. Prediction of IR & MW spectra
Pedro C. Gómez, Oscar Gálvez, Rafael G. Mosteo, Cristina Puzzarini, R. Escribano
DOI: 10.1039/B924890K
Density functional study of structural and electronic properties of bimetallic copper–gold clusters: comparison with pure and doped gold clusters
Huai-Qian Wang, Hui-Fang Li
DOI: 10.1039/B923003C
On the electronic and geometrical structure of the trans- and cis-isomer of tetra-tert-butyl-azobenzene on Au(111)
Roland Schmidt, Sebastian Hagen, Daniel Brete, Robert Carley, Cornelius Gahl, Jadranka Dokić, Peter Saalfrank, Stefan Hecht, Petra Tegeder
DOI: 10.1039/B924409C
ReaxFF-molecular dynamics simulations of non-oxidative and non-catalyzed thermal decomposition of methane at high temperatures
Norbert Lümmen
DOI: 10.1039/C003367G
Deep-space glycine formationvia Strecker-type reactions activated by ice water dust mantles. A computational approach
Albert Rimola, Mariona Sodupe, Piero Ugliengo
DOI: 10.1039/B923439J
You might also like
What precautions should be taken when handling 4-Methyl-6-(trifluoromethyl)quinoline (CAS: 40716-16-3)?
When handling 4-Methyl-6-(trifluoromethyl)quinoline (CAS: 40716-16-3), safety go...
What is 4-(3,5-Difluorophenyl)aniline (CAS: 405058-00-6)?
4-(3,5-Difluorophenyl)aniline is an aromatic organic compound with the CAS numbe...
How is 5-{[4-(Trifluoromethyl)phenyl]sulfanyl}-1,2,3-thiadiazole-4-carboxylic acid (CAS: 338982-07-3) typically synthesized?
5-{[4-(Trifluoromethyl)phenyl]sulfanyl}-1,2,3-thiadiazole-4-carboxylic acid can ...
What is the market or research trend for 4-Benzylaniline hydrochloride (CAS: 6317-57-3)?
The market for 4-Benzylaniline hydrochloride (CAS: 6317-57-3) is steadily growin...
Is [3-(Diethylsulfamoyl)phenyl]boronic acid (CAS: 871329-58-7) safe?
[3-(Diethylsulfamoyl)phenyl]boronic acid is generally considered safe when handl...
What are the main uses of 3-Bromo-2,5-dimethoxyaniline (CAS: 115929-62-9)?
3-Bromo-2,5-dimethoxyaniline is mainly used in the pharmaceutical and chemical i...
What regulatory guidelines apply to N-Methyl-1-(5-methyl-1H-indol-3-yl)methanamine (CAS: 915922-67-7)?
N-Methyl-1-(5-methyl-1H-indol-3-yl)methanamine (CAS: 915922-67-7) is subject to ...
What industries use Carbamic acid, N-[(5S)-5,6-diamino-6-oxohexyl]-, 1,1-dimethylethyl ester (CAS: 24828-96-4)?
This compound is primarily used in the pharmaceutical industry for the synthesis...
How should 2-Methyl-2-propanyl [(1S,3R)-3-aminocyclohexyl]carbamate (CAS: 1298101-47-9) be stored?
2-Methyl-2-propanyl [(1S,3R)-3-aminocyclohexyl]carbamate (CAS: 1298101-47-9) sho...
What industries use Ethyl 2-bromo-4,4,4-trifluorobutanoate (CAS: 367-33-9)?
Ethyl 2-bromo-4,4,4-trifluorobutanoate (CAS: 367-33-9) is utilized in the pharma...
Source Journal
Organic Chemistry Frontiers

Organic Chemistry Frontiers publishes high-quality research from across organic chemistry. Emphases are placed on studies that make significant contributions to the field of organic chemistry by reporting either new or significantly improved protocols or methodologies. Topics include, but are not limited to the following: Organic synthesis Development of synthetic methodologies Catalysis Natural products Functional organic materials Supramolecular and macromolecular chemistry Physical and computational organic chemistry










![[(1S,2S,3R,4S,7R,9S,10S,12R,15S)-4,12-Diacetyloxy-15-[(2R,3S)-3-benzamido-3-phenyl-2-(2,2,2-trichloroethoxycarbonyloxy)propanoyl]oxy-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.03,10.04,7]heptadec-13-en-2-yl] benzoate structure [(1S,2S,3R,4S,7R,9S,10S,12R,15S)-4,12-Diacetyloxy-15-[(2R,3S)-3-benzamido-3-phenyl-2-(2,2,2-trichloroethoxycarbonyloxy)propanoyl]oxy-1,9-dihydroxy-10,14,17,17-tetramethyl-11-oxo-6-oxatetracyclo[11.3.1.03,10.04,7]heptadec-13-en-2-yl] benzoate structure](https://static.chemtradehub.com/structs/100/100431-55-8-7104.webp)



