Carballeira, J. D.; Krumlinde, P.; Bocola, M.; Vogel, A.; Reetz, M. T.; Bäckvall, J.-E. Directed Evolution and Axial Chirality: Optimization of the Enantioselectivity of Pseudomonas Aeruginosa Lipase Towards the Kinetic Resolution of a Racemic Allene. Chemical Communications (Cambridge, U. K.)2007, 1913–1915.
Reetz, M. T.; Puls, M.; Carballeira, J. D.; Vogel, A.; Jaeger, K.-E.; Eggert, T.; Thiel, W.; Bocola, M.; Otte, N. Learning from Directed Evolution: Further Lessons from Theoretical Investigations into Cooperative Mutations in Lipase Enantioselectivity. ChemBioChem2007, 8, 106–112.
Reetz, M. T.; Carballeira, J. D.; Vogel, A. Iterative Saturation Mutagenesis on the Basis of B Factors as a Strategy for Increasing Protein Thermostability. Angewandte Chemie-International Edition2006, 45, 7745–7751.
Reetz, M. T.; Carballeira, J. D.; Vogel, A. Iterative Saturation Mutagenesis on the Basis of B Factors as a Strategy for Increasing Protein Thermostability. Angewandte Chemie2006, 118, 7909–7915.
Bocola, M.; Schulz, F.; Leca, F.; Vogel, A.; Fraaije, M. W.; Reetz, M. T. Converting Phenylacetone Monooxygenase into Phenylcyclohexanone Monooxygenase by Rational Design: Towards Practical Baeyer-Villiger Monooxygenases. Advanced Synthesis & Catalysis2005, 347, 979–986.
Reetz, M. T.; Bocola, M.; Carballeira, J. D.; Zha, D.; Vogel, A. Expanding the Range of Substrate Acceptance of Enzymes: Combinatorial Active-Site Saturation Test. Angewandte Chemie-International Edition2005, 44, 4192–4196.
Reetz, M. T.; Bocola, M.; Carballeira, J. D.; Zha, D.; Vogel, A. Expanding the Range of Substrate Acceptance of Enzymes: Combinatorial Active-Site Saturation Test. Angewandte Chemie2005, 117, 4264–4268.
Vogel, A.; Schilling, O.; Späth, B.; Marchfelder, A. The TRNase Z Family of Proteins: Physiological Functions, Substrate Specificity and Structural Properties. Biological Chemistry2005, 386, 1253–1264.
Shalini Yadav, a postdoctoral researcher at the Max-Planck-Institut für Kohlenforschung, has received the Alexander von Humboldt Fellowship to advance her computational chemistry research on enzymes.