Research
Computational studies of enzymes
![](https://uni-goettingen.de/storage/pictures/307a4c576f3313090ff994ed5ace2014.png)
Several of our most recent studies focus on the study of proton movement/diffusion in allosteric communication and in catalysis. These mechanisms appear to be recurrent through evolutionary pressure, potentially starting from simple aqueous environment reactivity. Further reading:
Nature 573, 609-613 (2019)
We have also collaborated with the Tittmann group in uncovering a new naturally occurring protein crosslink. The latter has been extensively characterised in our group. We are now in the process of studying the mechanism of its formation and the specific conditions required for this bond formation, particularly in competition with other pathways, such as disulfide bond formation or further oxidation of cysteine.
Nature, 593, 460 - 464 (2021)
Studies of reactivity and non-covalent interactions
![](https://uni-goettingen.de/storage/pictures/82585fb42c31b79a61cfde09396cd11b.png)
Below you can find some recent examples:
Chemistry A European Journal, 27, 53, 13358 - 13366 (2021)
Inorg. Chem., 60, 1, 449 - 459 (2021)
Angewandte Chemie - International Edition 133, 1919 - 1924 (2021)
Local correlation methods
![](https://uni-goettingen.de/storage/pictures/a4548447c6d0d93117f69c259de85a36.jpg)
Below you can find some examples of our work in this field:
Phys. Chem. Chem. Phys.,23, 12093 - 12104 (2021)
J. Chem. Theory Comput. 15, 922-937 (2019)
J. Chem. Theory Comput. 14, 5192-5202 (2018)