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DNA-Encoded Libraries: Hydrazide as a Pluripotent Precursor for On-DNA Synthesis of Various Azole Derivatives
Authors:Dr Fei Ma  Dr Jie Li  Shuning Zhang  Yuang Gu  Tingting Tan  Wanting Chen  Shuyue Wang  Dr Peixiang Ma  Dr Hongtao Xu  Prof Guang Yang  Prof Richard A Lerner
Institution:1. Shanghai Institute for Advanced Immunochemical Studies, ShanghaiTech University, 201210 Shanghai, P. R. China;2. Department of Chemistry, The Scripps Research Institute, La Jolla, CA 92037 USA
Abstract:DNA-encoded combinatorial chemical library (DEL) technology, an approach that combines the power of genetics and chemistry, has emerged as an invaluable tool in drug discovery. Skeletal diversity plays a fundamental importance in DEL applications, and relies heavily on novel DNA-compatible chemical reactions. We report herein a phylogenic chemical transformation strategy using DNA-conjugated benzoyl hydrazine as a common versatile precursor in azole chemical expansion of DELs. DNA-compatible reactions deriving from the common benzoyl hydrazine precursor showed excellent functional group tolerance with exceptional efficiency in the synthesis of various azoles, including oxadiazoles, thiadiazoles, and triazoles, under mild reaction conditions. The phylogenic chemical transformation strategy provides DELs a facile way to expand into various unique chemical spaces with privileged scaffolds and pharmacophores.
Keywords:azole  DNA-compatible reactions  DNA-encoded libraries  hydrazide
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