Two strategies to engineer flexible loops for improved enzyme thermostability
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/srep41212.pdf
Reference59 articles.
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2. Draths, K. M. et al. Biocatalytic Synthesis of Aromatics from D-Glucose - the Role of Transketolase. Journal of the American Chemical Society 114, 3956–3962 (1992).
3. Demuynck, C., Bolte, J., Hecquet, L. & Dalmas, V. Enzyme-Catalyzed Synthesis of Carbohydrates - Synthetic Potential of Transketolase. Tetrahedron Lett 32, 5085–5088 (1991).
4. Morris, K. G. et al. Transketolase from Escherichia coli: A practical procedure for using the biocatalyst for asymmetric carbon-carbon bond synthesis. Tetrahedron-Asymmetr 7, 2185–2188 (1996).
5. Sprenger, G. A. & Pohl, M. Synthetic potential of thiamin diphosphate-dependent enzymes. J Mol Catal B-Enzym 6, 145–159 (1999).
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