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Emily J. Parker, Ph.D.

Affiliations: 
1991-1998 Chemistry University of Cambridge, Cambridge, England, United Kingdom 
 1998-2006 Massey University, Palmerston North, Manawatu-Wanganui, New Zealand 
 2006- Biomolecular Interaction Centre University of Canterbury, New Zealand, Christchurch, Canterbury, New Zealand 
Area:
Bioorganic
Website:
http://www.chem.canterbury.ac.nz/people/parker.shtml
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Publications

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Bai Y, Parker EJ. (2021) Reciprocal allostery arising from a bi-enzyme assembly controls aromatic amino acid biosynthesis in Prevotella nigrescens. The Journal of Biological Chemistry. 101038
Jiao W, Lang EJ, Bai Y, et al. (2020) Diverse allosteric componentry and mechanisms control entry into aromatic metabolite biosynthesis. Current Opinion in Structural Biology. 65: 159-167
Lacaze P, Sebra R, Riaz M, et al. (2020) Medically actionable pathogenic variants in a population of 13,131 healthy elderly individuals. Genetics in Medicine : Official Journal of the American College of Medical Genetics
Jiao W, Fan Y, Blackmore NJ, et al. (2020) A single amino acid substitution uncouples catalysis and allostery in an essential biosynthetic enzyme in Mycobacterium tuberculosis. The Journal of Biological Chemistry
Rutherford C, Ewan L, Parker E, et al. (2020) P082: Magseed experience - A single centre prospective study Ejso. 46
Van de Bittner KC, Cameron RC, Bustamante LY, et al. (2019) Nodulisporic acid E biosynthesis: characterisation of NodD1, an indole-diterpene prenyltransferase that acts on an emindole SB derived indole-diterpene scaffold. Medchemcomm. 10: 1160-1164
Jiao W, Mittelstädt G, Moggré GJ, et al. (2019) Hinge Twists and Population Shifts Deliver Regulated Catalysis for ATP-PRT in Histidine Biosynthesis. Biophysical Journal
Bai Y, Lang EJM, Nazmi AR, et al. (2019) Domain cross-talk within a bifunctional enzyme provides catalytic and allosteric functionality in the biosynthesis of aromatic amino acids. The Journal of Biological Chemistry
Sterritt OW, Lang EJM, Kessans SA, et al. (2018) The short-form type II DAH7PS from , associated with phenazine biosynthesis, suggests reclassification of type II enzymes. Bioscience Reports
Heikal A, Nakatani Y, Jiao W, et al. (2018) 'Tethering' fragment-based drug discovery to identify inhibitors of the essential respiratory membrane protein type II NADH dehydrogenase. Bioorganic & Medicinal Chemistry Letters
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