In this report, we present the first library of tripodal synthetic receptor molecules containing three different, temporarily N-terminal protected peptide arms capable of performing hydrolytic reactions. To construct this library, the orthogonally protected triazacyclophane (TAC)-scaffold was used in the preparation of a split−mix library of 19 683 resin bound tripodal receptor molecules. For the construction of the peptide arms, three different sets of amino acids were used, each focused on one part of the catalytic triad as found in several families of hydrolytic enzymes. Therefore, in the sets of amino acids used to assemble these tripeptides, basic (containing His and Lys), nucleophilic (containing Ser and Cys), or acidic (containing As...
Proteins have desirable functionality in applications other than that of their biological origin, su...
Two versatile tripodal cyclotriveratrylene (CTV)-based scaffolds (7 and 9) have been prepared for th...
Hydrophilic/hydrophobic patterning is a powerful strategy to control folding in non-natural polymers...
In this report, we present the first library of tripodal synthetic receptor molecules containing thr...
A novel selectively deprotectable triazacyclophane scaffold was used for the design and split−mix sy...
A novel selectively deprotectable triazacyclophane scaffold was used for the design and split-mix sy...
This thesis describes the scope and limitations of the application of TriAzaCyclophane (TAC)-scaffol...
Solid phase synthesis of tripodal systems and study of their catalytic and molecular recognitions pr...
The split-mix synthesis of a 6912-member combined library of tweezer- and tripodal synthetic recepto...
A large and diverse library of a TAC-based tripodal synthetic receptor library (6) has been prepared...
A library consisting of 40 cyclotriveratrylene-based tripodal scaffold molecules was constructed by ...
Peptidyl privileged structures have been widely used by many groups to discover biologically active ...
A number of simple oligopeptides have been recently developed as minimalistic catalysts for mimickin...
4Bioactive hydrogels based on the self-assembly of tripeptides have attracted great interest in rece...
The discovery and generation of biocatalysts with extended catalytic versatilities are of immense re...
Proteins have desirable functionality in applications other than that of their biological origin, su...
Two versatile tripodal cyclotriveratrylene (CTV)-based scaffolds (7 and 9) have been prepared for th...
Hydrophilic/hydrophobic patterning is a powerful strategy to control folding in non-natural polymers...
In this report, we present the first library of tripodal synthetic receptor molecules containing thr...
A novel selectively deprotectable triazacyclophane scaffold was used for the design and split−mix sy...
A novel selectively deprotectable triazacyclophane scaffold was used for the design and split-mix sy...
This thesis describes the scope and limitations of the application of TriAzaCyclophane (TAC)-scaffol...
Solid phase synthesis of tripodal systems and study of their catalytic and molecular recognitions pr...
The split-mix synthesis of a 6912-member combined library of tweezer- and tripodal synthetic recepto...
A large and diverse library of a TAC-based tripodal synthetic receptor library (6) has been prepared...
A library consisting of 40 cyclotriveratrylene-based tripodal scaffold molecules was constructed by ...
Peptidyl privileged structures have been widely used by many groups to discover biologically active ...
A number of simple oligopeptides have been recently developed as minimalistic catalysts for mimickin...
4Bioactive hydrogels based on the self-assembly of tripeptides have attracted great interest in rece...
The discovery and generation of biocatalysts with extended catalytic versatilities are of immense re...
Proteins have desirable functionality in applications other than that of their biological origin, su...
Two versatile tripodal cyclotriveratrylene (CTV)-based scaffolds (7 and 9) have been prepared for th...
Hydrophilic/hydrophobic patterning is a powerful strategy to control folding in non-natural polymers...