Synthesis of 2-(2-methoxyethyl)- and 2-(2-thiomethoxyethyl)-aniline and related compounds
作者:U. Siemeling、T. T�rk、U. Hammermeister
DOI:10.1007/bf00807163
日期:——
2-(2-Nitrophenyl)-ethanol (2) was methylated with dimethyl sulfate to give 2-(2-methoxyethyl)-1-nitrobenzene (3a) which then was reduced with hydrazine hydrate in the presence of Raney nickel to 2-(2-methoxyethyl)-aniline (1a). Compound 1a can be transformed into the N-monosilylated derivative 4 by lithiation with n-butyllithium and subsequent reaction with chlorotrimethylsilane. Reaction of 2 with p-toluenesulfonyl chloride yields 2-(2-nitrophenyl)-ethyl p-toluenesulfonate (5), which reacts with sodium thiomethoxide to give 2-(2-thiomethoxyethyl)-1-nitrobenzene (3b). 3b was reduced with hydrazine hydrate in the presence of Raney nickel to yield 2-(2-thiomethoxyethyl)-aniline (1b). Ethyl (2-nitrophenyl)-acetate (6) could be dimethylated with methyl iodide in the presence of potassium tert-butoxide and 18-crown-6 to give ethyl 2-methyl-2-(2-nitrophenyl)-propionate (7). Reduction of 7 with lithium borohydride yields 2,3-dihydro-3,3-dimethyl-1H-indole (9) and 2-[(1-hydroxy-2-methyl)-2-propyl]-aniline (10).
Palladium-Catalyzed Amidation of Unactivated C(sp<sup>3</sup>)H Bonds: from Anilines to Indolines
作者:Julia J. Neumann、Souvik Rakshit、Thomas Dröge、Frank Glorius
DOI:10.1002/anie.200903035
日期:2009.9.1
Unreactive CH to attractive CN: A palladium‐catalyzed intramolecular direct amidation of unactivated C(sp3)Hbonds combines CH activation and CN bond formation into one efficient process. Under the optimized conditions, an extraordinary tolerance of functional groups was observed, and numerous indoline derivatives were formed (see scheme).
Alkynyl Benzoxazines and Dihydroquinazolines as Cysteine Targeting Covalent Warheads and Their Application in Identification of Selective Irreversible Kinase Inhibitors
作者:Kirsten McAulay、Emily A. Hoyt、Morgan Thomas、Marianne Schimpl、Michael S. Bodnarchuk、Hilary J. Lewis、Derek Barratt、Deepa Bhavsar、David M. Robinson、Michael J. Deery、Derek J. Ogg、Gonçalo J. L. Bernardes、Richard A. Ward、Michael J. Waring、Jason G. Kettle
DOI:10.1021/jacs.9b13391
日期:2020.6.10
protein modification and incorporation into kinase drug scaffolds. A potent covalent inhibitor of JAK3 kinase was identified with superior selectivity across the kinome and improvements in in vitro pharmacokinetic profile relative to the related acrylamide-based inhibitor. In addition, the use of a novel heterocycle as cysteine reactive warhead is employed to target Cys788 in c-KIT where acrylamide has previously