Alkyne Linchpin Strategy for Drug:Pharmacophore Conjugation: Experimental and Computational Realization of a Meta-Selective Inverse Sonogashira Coupling

The late-stage functionalization (LSF) of pharmaceutical and agrochemical compounds by the site-selective activation of C–H bonds provides access to diverse structural analogs and expands synthetically-accessible chemical space. We report a C–H functionalization LSF strategy that hinges on the use o...

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Veröffentlicht in:Journal of the American Chemical Society 2020-02, Vol.142 (8), p.3762-3774
Hauptverfasser: Porey, Sandip, Zhang, Xinglong, Bhowmick, Suman, Kumar Singh, Vikas, Guin, Srimanta, Paton, Robert S, Maiti, Debabrata
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Sprache:eng
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Zusammenfassung:The late-stage functionalization (LSF) of pharmaceutical and agrochemical compounds by the site-selective activation of C–H bonds provides access to diverse structural analogs and expands synthetically-accessible chemical space. We report a C–H functionalization LSF strategy that hinges on the use of an alkyne linchpin to assemble conjugates of sp2-rich marketed pharmaceuticals and agrochemicals with sp3-rich 3D fragments and natural products. This is accomplished through a template-assisted inverse Sonogashira reaction that displays high levels of selectivity for the meta position. This protocol is also amenable to distal structural modifications of α-amino acids. The transformation of alkyne functionality to other functional groups further highlights the applicative potential. Computational and experimental mechanistic studies shed light on the detailed mechanism. Turnover-limiting 1,2-migratory insertion of the bromoalkyne coupling partner occurs after relatively fast C–H activation. While this insertion occurs unselectively, regioconvergence results from one of the adducts undergoing a 1,2-trialkylsilyl migration to form the alkynylated product. A heterobimetallic Pd–Ag transition structure is essential for product formation in the β-bromide elimination step.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.9b10646