Department of Chemistry

portrait of Professor Christopher Abell FMedSci

Professor Christopher Abell FMedSci

Christ's College

Groups: Abell group website

Telephone: 01223 336405

E-mail: ca26@cam.ac.uk

One of the biggest challenges in biological chemistry is the design of small molecules that interact selectively with macromolecules. We are pioneering the development of the use of fragments to address this challenge. This approach involves close synergistic interaction between synthetic organic chemistry, biophysics and structural biology. We are using fragment-based methods to identify inhibitors of enzymes from Mycobacterium tuberculosis, and to develop small molecules that modulate protein-protein interactions. We are also keen to explore new applications for fragments e.g. to identify molecules that modulate the activity of riboswitches, and to assign function to orphan proteins.

Our second major area of research is to develop the use of microdroplets in microfluidics as a novel experimental platform for biological chemistry. This research is highly interdisciplinary and involves biological chemistry, microfluidics, nanofabrication, laser spectroscopy and mass spectrometry. We are particularly interested in looking at cells in droplets, e.g. bacteria to study quorum sensing, algae for bio-fuel development.

 

Publications

POSTTRANSLATIONAL MODIFICATION OF KLEBSIELLA-PNEUMONIAE FLAVODOXIN BY COVALENT ATTACHMENT OF COENZYME-A, SHOWN BY P-31 NMR AND ELECTROSPRAY MASS-SPECTROMETRY, PREVENTS ELECTRON-TRANSFER FROM THE NIFJ PROTEIN TO NITROGENASE - A POSSIBLE NEW REGULATORY MECHANISM FOR BIOLOGICAL NITROGEN-FIXATION
RNF THORNELEY, C ABELL, GA ASHBY, MH DRUMMOND, RR EADY, S HUFF, CJ MACDONALD, A SHNEIER - BIOCHEMISTRY-US (1992) 31, 1216
(DOI: 10.1021/bi00119a035)
OBSERVATION OF AN IMINE INTERMEDIATE ON DEHYDROQUINASE BY ELECTROSPRAY MASS-SPECTROMETRY
A SHNEIER, C KLEANTHOUS, R DEKA, JR COGGINS, C ABELL - J AM CHEM SOC (1991) 113, 9416
(DOI: 10.1021/ja00024a085)
INHIBITION OF CHORISMATE SYNTHASE BY (6R) AND (6S)-6-FLUORO-5-ENOLPYRUVYLSHIKIMATE 3-PHOSPHATE
S BALASUBRAMANIAN, GM DAVIES, JR COGGINS, C ABELL - J AM CHEM SOC (1991) 113, 8945
(DOI: 10.1021/ja00023a051)
Uroporphyrinogen III synthase: Studies on its mechanism of action, molecular biology and biochemistry
N CROCKETT, PR ALEFOUNDER, AR BATTERSBY, C ABELL - Tetrahedron (1991) 47, 6003
(DOI: 10.1016/S0040-4020(01)86492-9)
An amino acid sequence motif observed amongst enzymes of the shikimate pathway [1]
TDH BUGG, PR ALEFOUNDER, C ABELL - Biochemical Journal (1991) 276, 841
Studies on the mechanism of hydroxymethylbilane synthase concerning the role of arginine residues in substrate binding.
M LANDER, AR PITT, PR ALEFOUNDER, D BARDY, C ABELL, AR BATTERSBY - Biochemical Journal (1991) 275 ( Pt 2), 447
THE SYNTHESIS OF (6R)-[6-H-2]-5-ENOLPYRUVYLSHIKIMATE-3-PHOSPHATE AND (6S)-[6-H-2]-5-ENOLPYRUVYLSHIKIMATE-3-PHOSPHATE
S BALASUBRAMANIAN, C ABELL - TETRAHEDRON LETT (1991) 32, 963
(DOI: 10.1016/S0040-4039(00)92131-2)
Terpenoid biosynthesis and the stereochemistry of enzyme-catalysed allylic addition-elimination reactions
DE Cane, C Abell, PHM Harrison, BR Hubbard, CT Kane, R Lattman, JS Oliver, SW Weiner - (1991) 332, 123
Observation of an isotope effect in the chorismate synthase reaction
S BALASUBRAMANIAN, C ABELL, JR COGGINS - Journal of the American Chemical Society (1990) 112, 8581
(DOI: 10.1021/ja00179a052)
INVESTIGATION OF PUTATIVE ACTIVE-SITE LYSINE RESIDUES IN HYDROXYMETHYLBILANE SYNTHASE - PREPARATION AND CHARACTERIZATION OF MUTANTS IN WHICH (A) LYS-55, (B) LYS-59 AND (C) BOTH LYS-55 AND LYS-59 HAVE BEEN REPLACED BY GLUTAMINE
A HADENER, PR ALEFOUNDER, GJ HART, C ABELL, AR BATTERSBY - Biochemical Journal (1990) 271, 487

 


General


Research Interests


Teaching


Personal


Publications

Funding


Funding: 

Further Funding Information: 

CV

CV: