There is an urgent need for the development of efficient methodologies that accelerate drug discovery. We demonstrate that the strategic combination of fragment linking/optimization and protein-templated click chemistry is an efficient and powerful method that accelerates the hit-identification process for the aspartic protease endothiapepsin. The best binder, which inhibits endothiapepsin with an IC50 value of 43 μm, represents the first example of triazole-based inhibitors of endothiapepsin. Our strategy could find application on a whole range of drug targets
Abstract: Aspartic proteases are a class of enzymes that play a causative role in numerous diseases ...
Successful optimization of a given lead scaffold requires thorough binding-site mapping of the targe...
Kinetic target-guided synthesis represents an efficient hit-identification strategy, in which the pr...
There is an urgent need for the development of efficient methodologies that accelerate drug discover...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
We have highlighted throughout this thesis that fragment-based drug design (FBDD) and structure-base...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
Fragment-based drug design (FBDD) has emerged as an efficient hit-identification and/or-optimization...
Structure-based design (SBD) can be used for the design and/or optimization of new inhibitors for a ...
Aspartic proteases are a class of enzymes that play a causative role in numerous diseases such as ma...
The work focuses on the evaluation and comparison of different fragment-based approaches, for which ...
Abstract: Aspartic proteases are a class of enzymes that play a causative role in numerous diseases ...
Successful optimization of a given lead scaffold requires thorough binding-site mapping of the targe...
Kinetic target-guided synthesis represents an efficient hit-identification strategy, in which the pr...
There is an urgent need for the development of efficient methodologies that accelerate drug discover...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
We have highlighted throughout this thesis that fragment-based drug design (FBDD) and structure-base...
Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are n...
Fragment-based drug design (FBDD) has emerged as an efficient hit-identification and/or-optimization...
Structure-based design (SBD) can be used for the design and/or optimization of new inhibitors for a ...
Aspartic proteases are a class of enzymes that play a causative role in numerous diseases such as ma...
The work focuses on the evaluation and comparison of different fragment-based approaches, for which ...
Abstract: Aspartic proteases are a class of enzymes that play a causative role in numerous diseases ...
Successful optimization of a given lead scaffold requires thorough binding-site mapping of the targe...
Kinetic target-guided synthesis represents an efficient hit-identification strategy, in which the pr...