Abstract:
The present invention provides a synthetic regulator of protein function, which regulator is a light-sensitive regulator. The present invention further provides a light-regulated polypeptide that includes a subject synthetic regulator. Also provided are cells and membranes comprising a subject light-regulated polypeptide. The present invention further provides methods of modulating protein function, involving use of light. The present invention further provides methods of identifying agents that modulate protein function.
Abstract:
The present invention provides a synthetic regulator of protein function, which regulator is a light-sensitive regulator. The present invention further provides a light-regulated polypeptide that includes a subject synthetic regulator. Also provided are cells and membranes comprising a subject light-regulated polypeptide. The present invention further provides methods of modulating protein function, involving use of light. The present invention further provides methods of identifying agents that modulate protein function.
Abstract:
The invention provides novel tricyclic compounds of Formula I′ that inhibit β-secretase cleavage of APP and are useful as therapeutic agents for treating neurodegenerative diseases.
Abstract:
The present invention provides a synthetic regulator of protein function, which regulator is a light-sensitive regulator. The present invention further provides a light-regulated polypeptide that includes a subject synthetic regulator. Also provided are cells and membranes comprising a subject light-regulated polypeptide. The present invention further provides methods of modulating protein function, involving use of light. The present invention further provides methods of identifying agents that modulate protein function.
Abstract:
The present invention provides a synthetic regulator of glutamate receptor function, which regulator is a light-sensitive (photoreactive) regulator. The present invention further provides a light-regulated glutamate receptor that includes a subject synthetic regulator non-covalently associated with the glutamate receptor. Also provided are cells and membranes comprising a subject light-regulated glutamate receptor. The present invention further provides methods of modulating glutamate receptor function, involving use of light. The present invention further provides methods of identifying agents that modulate glutamate receptor function.
Abstract:
The present invention provides a synthetic regulator of glutamate receptor function, which regulator is a light-sensitive (photoreactive) regulator. The present invention further provides a light-regulated glutamate receptor that includes a subject synthetic regulator non-covalently associated with the glutamate receptor. Also provided are cells and membranes comprising a subject light-regulated glutamate receptor. The present invention further provides methods of modulating glutamate receptor function, involving use of light. The present invention further provides methods of identifying agents that modulate glutamate receptor function.
Abstract:
The invention provides novel spirotetrahydronaphthalene compounds of Formula α that inhibit β-secretase cleavage of APP and are useful as therapeutic agents for treating neurodegenerative diseases.
Abstract:
The present invention provides a synthetic regulator of protein function, which regulator is a light-sensitive regulator. The present invention further provides a light-regulated polypeptide that includes a subject synthetic regulator. Also provided are cells and membranes comprising a subject light-regulated polypeptide. The present invention further provides methods of modulating protein function, involving use of light. The present invention further provides methods of identifying agents that modulate protein function.