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Late-stage oxidative C(sp(3))-H methylation 期刊论文
NATURE, 2020, 580 (7805) : 621-+
作者:  Fessler, Evelyn;  Eckl, Eva-Maria;  Schmitt, Sabine;  Mancilla, Igor Alves;  Meyer-Bender, Matthias F.;  Hanf, Monika;  Philippou-Massier, Julia;  Krebs, Stefan;  Zischka, Hans;  Jae, Lucas T.
收藏  |  浏览/下载:69/0  |  提交时间:2020/07/03

Frequently referred to as the '  magic methyl effect'  , the installation of methyl groups-especially adjacent (alpha) to heteroatoms-has been shown to dramatically increase the potency of biologically active molecules(1-3). However, existing methylation methods show limited scope and have not been demonstrated in complex settings(1). Here we report a regioselective and chemoselective oxidative C(sp(3))-H methylation method that is compatible with late-stage functionalization of drug scaffolds and natural products. This combines a highly site-selective and chemoselective C-H hydroxylation with a mild, functional-group-tolerant methylation. Using a small-molecule manganese catalyst, Mn(CF3PDP), at low loading (at a substrate/catalyst ratio of 200) affords targeted C-H hydroxylation on heterocyclic cores, while preserving electron-neutral and electron-rich aryls. Fluorine- or Lewis-acid-assisted formation of reactive iminium or oxonium intermediates enables the use of a mildly nucleophilic organoaluminium methylating reagent that preserves other electrophilic functionalities on the substrate. We show this late-stage C(sp(3))-H methylation on 41 substrates housing 16 different medicinally important cores that include electron-rich aryls, heterocycles, carbonyls and amines. Eighteen pharmacologically relevant molecules with competing sites-including drugs (for example, tedizolid) and natural products-are methylated site-selectively at the most electron rich, least sterically hindered position. We demonstrate the syntheses of two magic methyl substrates-an inverse agonist for the nuclear receptor RORc and an antagonist of the sphingosine-1-phosphate receptor-1-via late-stage methylation from the drug or its advanced precursor. We also show a remote methylation of the B-ring carbocycle of an abiraterone analogue. The ability to methylate such complex molecules at late stages will reduce synthetic effort and thereby expedite broader exploration of the magic methyl effect in pursuit of new small-molecule therapeutics and chemical probes.


A manganese-catalysed oxidative C(sp(3))-H methylation method allows a methyl group to be selectively installed into medicinally important heterocycles, providing a way to improve pharmaceuticals and better understand the '  magic methyl effect'  .


  
Linkages of plant stoichiometry to ecosystem production and carbon fluxes with increasing nitrogen inputs in an alpine steppe 期刊论文
GLOBAL CHANGE BIOLOGY, 2017, 23 (12)
作者:  Peng, Yunfeng;  Li, Fei;  Zhou, Guoying;  Fang, Kai;  Zhang, Dianye;  Li, Changbin;  Yang, Guibiao;  Wang, Guanqin;  Wang, Jun;  Yang, Yuanhe
收藏  |  浏览/下载:30/0  |  提交时间:2019/04/09
carbon (C) cycle  ecosystem respiration  gross ecosystem productivity  net ecosystem carbon exchange  nitrogen addition  nitrogen:phosphorous (N:P) ratio  N-P imbalance  
Imbalanced nutrient recycling in a warmer ocean driven by differential response of extracellular enzymatic activities 期刊论文
GLOBAL CHANGE BIOLOGY, 2017, 23 (10)
作者:  Ayo, Begona;  Abad, Naiara;  Artolozaga, Itxaso;  Azua, Inigo;  Bana, Zurine;  Unanue, Marian;  Gasol, Josep M.;  Duarte, Carlos M.;  Iriberri, Juan
收藏  |  浏览/下载:24/0  |  提交时间:2019/04/09
beta-glucosidase  alkaline phosphatase  C:N:P molar ratio  extracellular enzymatic activity  global warming  leucine aminopeptidase  subtropical and tropical ocean  temperature-sensitivity  
Species sorting and stoichiometric plasticity control community C:P ratio of first-order aquatic consumers 期刊论文
ECOLOGY LETTERS, 2017, 20 (6)
作者:  Teurlincx, Sven;  Velthuis, Mandy;  Seroka, Dominika;  Govaert, Lynn;  van Donk, Ellen;  Van de Waal, Dedmer B.;  Declerck, Steven A. J.
收藏  |  浏览/下载:12/0  |  提交时间:2019/04/09
Community C:P  ecological stoichiometry  food quality  C:P ratio  price equation  stoichiometric mismatch