This Minireview focuses on the hemithioindigo photoswitch and its use for the reversible control of three-dimensional peptide structure and related biological functions. Both the general design aspects and biophysical properties of various hemithioindigo-based chromopeptides are summarized. Hemithioindigo undergoes reversible ZE photoisomerization after absorption of visible light. The unique ultrafast switching mechanism of hemithioindigo combines picosecond isomerization kinetics with strong double-bond torsion after light absorption, making it the ideal tool for instantaneous modulation of biological structure. Various inhibitors and model peptides based on hemithioindigo are described that can directly regulate biological signaling or a...
The secondary structure of peptides is of pivotal importance for their biological function. The intr...
The insertion of azobenzene moiety in complex molecular protein or peptide systems can lead to molec...
Hemithioindigos are a versatile group of molecules with the ability to undergo double bond isomerisa...
This Minireview focuses on the hemithioindigo photoswitch and its use for the reversible control of ...
This Minireview focuses on the hemithioindigo photoswitch and its use for the reversible control of ...
The photochemical properties of a new ultrafast photoswitch based on hemithioindigo derivatives are ...
The spectroscopy and dynamics of a novel hemithioindigo-based photoswitch forming a ω-amino acid der...
The rapidly expanding field of photoswitchable biomolecules is a major frontier in scientific resear...
Two hemithioindigo-hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Two hemithioindigo-hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Two hemithioindigo−hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Hemithioindigo (HTI) is an emerging photoswitch with many advantageous properties compared to the co...
Two hemithioindigo–hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Four newly synthesized Hemithioindigo-based peptide-switches with changing meta/para-substitution-pa...
The last few years have witnessed significant advances in the use of light as a stimulus to control ...
The secondary structure of peptides is of pivotal importance for their biological function. The intr...
The insertion of azobenzene moiety in complex molecular protein or peptide systems can lead to molec...
Hemithioindigos are a versatile group of molecules with the ability to undergo double bond isomerisa...
This Minireview focuses on the hemithioindigo photoswitch and its use for the reversible control of ...
This Minireview focuses on the hemithioindigo photoswitch and its use for the reversible control of ...
The photochemical properties of a new ultrafast photoswitch based on hemithioindigo derivatives are ...
The spectroscopy and dynamics of a novel hemithioindigo-based photoswitch forming a ω-amino acid der...
The rapidly expanding field of photoswitchable biomolecules is a major frontier in scientific resear...
Two hemithioindigo-hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Two hemithioindigo-hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Two hemithioindigo−hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Hemithioindigo (HTI) is an emerging photoswitch with many advantageous properties compared to the co...
Two hemithioindigo–hemistilbene (HTI) derivatives, designed to operate as structural switches in pep...
Four newly synthesized Hemithioindigo-based peptide-switches with changing meta/para-substitution-pa...
The last few years have witnessed significant advances in the use of light as a stimulus to control ...
The secondary structure of peptides is of pivotal importance for their biological function. The intr...
The insertion of azobenzene moiety in complex molecular protein or peptide systems can lead to molec...
Hemithioindigos are a versatile group of molecules with the ability to undergo double bond isomerisa...