Abstract
The natural product rapamycin has been used to provide temporal and quantitative control of gene expression in animals through its ability to interact with two proteins simultaneously. A shortcoming of this approach is that rapamycin is an inhibitor of cell proliferation, the result of binding to FKBP12-rapamycin-associated protein (FRAP). To overcome this limitation, nontoxic derivatives of rapamycin bearing bulky substituents at its C16-position were synthesized, each in a single step. The isosteric isopropoxy and methallyl substituents with the nonnatural C16-configuration abolish both binding to FRAP and inhibition of T cell proliferation. Binding proteins for these derivatives were identified from libraries of cDNAs encoding mutants of the FKBP12-rapamycin-binding (FRB) domain of FRAP by using a mammalian three-hybrid transcription assay. Targeting of the mutations was guided by the structure of the FKBP12-rapamycin-FRB ternary complex. Three compensatory mutations in the FRB domain, all along one face of an alpha-helix in a rapamycin-binding pocket, were identified that together restore binding of the rapamycin derivatives. Using this mutant FRB domain, one of the nontoxic rapamycin derivatives induced targeted gene expression in Jurkat T cells with an EC50 below 10 nM. Another derivative was used to recruit a cytosolic protein to the plasma membrane, mimicking a process involved in many signaling pathways.
MeSH Terms
Animals
Biological Transport
Carrier Proteins/chemistry,genetics
Cell Membrane/drug effects,metabolism
DNA-Binding Proteins/chemistry,genetics
Gene Expression Regulation/drug effects
Heat-Shock Proteins/chemistry,genetics
Ligands
Molecular Structure
Polyenes/pharmacology
Proteins/metabolism
Recombinant Fusion Proteins/metabolism
Sirolimus
Tacrolimus Binding Proteins
Chemicals
Carrier Proteins
DNA-Binding Proteins
Heat-Shock Proteins
Ligands
Polyenes
Proteins
Recombinant Fusion Proteins
Tacrolimus Binding Proteins
Sirolimus
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Liberles S D
Howard Hughes Medical Institute, Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, MA 02138, USA.
Diver S T
Austin D J
Schreiber S L
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