激素SAM甲基转移酶启发的异构的C-H甲基化
Jinghan Gui1, Qianghui Zhou, Chung-Mao Pan
1Department of Chemistry, The Scripps Research Institute , 10550 North Torrey Pines Road, La Jolla, California 92037, United States.
Journal of the American Chemical Society
|March 12, 2014
概括
研究人员开发了一种新的C-H功能化方法,用于使用二硫甲硫酸盐 (PSMS) 甲基化异. 这种多功能方法允许在温和条件下进行药物样分子的后期功能化.
科学领域:
- 有机化学 有机化学
- 合成方法论 合成方法论
- 药用化学 医学化学
背景情况:
- C-H功能化提供了直接修改有机分子的途径.
- 甲基化是合成生物活性化合物的关键转化.
- 大自然的甲基化剂,S-adenosylmethionine (SAM),启发了新的合成方法.
研究的目的:
- 开发一种实用和多用途的C-H功能化方法,用于异二烯甲基化.
- 创建一个与敏感功能组兼容的协议,用于后期的功能化.
- 通过不同的合成途径访问医学上重要的图案.
主要方法:
- 开发二 (?? 硫甲硫酸盐) (PSMS) 作为一种新型甲基化试剂.
- PSMS与异素的反应,形成可分离的 (硫) 甲基化中间体.
- 介质的脱硫或加工,以产生甲基化或甲基化产品.
主要成果:
- 建立了一个温和的,操作上简单的C-H甲基化协议,用于 heteroarenes.
- 该方法在室温的露天条件下进行.
- 该协议证明了与敏感的功能组的兼容性,使得后期功能化成为可能.
结论:
- PSMS提供了一种高效和实用的方法,用于异二烯甲基化.
- 开发的方法为合成甲基化和甲基化化合物提供了一个多功能平台.
- 这一策略促进了药理相关基质的后期功能化.
相关概念视频
Radical Reactivity: Electrophilic Radicals
1.6K
Radicals adjacent to electron‐withdrawing groups are called electrophilic radicals. These radicals readily react with nucleophilic alkenes. For example, the malonate radical, in which the radical center is flanked by two electron‐withdrawing groups, reacts readily with butyl vinyl ether, which consists of an electron‐donating oxygen substituent. The reaction between electrophilic malonate radical and nucleophilic vinyl ether is favored because the radical has a...
1.6K
Radical Reactivity: Nucleophilic Radicals
1.7K
Radicals adjacent to electron-donating groups are called nucleophilic radicals. These radicals readily react with electrophilic alkenes. The SOMO–LUMO interactions are the driving force for the reaction, where the high-energy SOMO of the electron-rich, nucleophilic radicals interacts with the low-energy LUMO of the electron-deficient, electrophilic alkenes. Such SOMO–LUMO interactions are the basis of reactive radical traps, affecting the selectivity in radical reactions. For...
1.7K
Phase II Reactions: Methylation Reactions
915
Methylation is a phase II biotransformation process involving the attachment of a methyl group to a substrate. Enzymes known as methyltransferases orchestrate this reaction.
The mechanism of methylation unfolds in two stages. The first stage sees a methyltransferase enzyme facilitating the transfer of a methyl group from S-adenosylmethionine (SAM) to the substrate, forming S-adenosylhomocysteine (SAH). The second stage involves further metabolism of SAH into homocysteine, which can be recycled...
The mechanism of methylation unfolds in two stages. The first stage sees a methyltransferase enzyme facilitating the transfer of a methyl group from S-adenosylmethionine (SAM) to the substrate, forming S-adenosylhomocysteine (SAH). The second stage involves further metabolism of SAH into homocysteine, which can be recycled...
915
Radical Substitution: Halogenation of Alkanes and Alkyl Substituents
7.7K
In the presence of heat or light, alkanes react with molecular halogens to form alkyl halides by a substitution reaction called radical halogenation. This reaction has three steps: initiation, propagation, and termination, as seen in the radical chlorination of methane to produce methyl chloride.
In the initiation step of the reaction, the chlorine molecule undergoes homolytic cleavage in the presence of light or heat, forming two highly reactive chlorine radicals. Propagation occurs in two...
In the initiation step of the reaction, the chlorine molecule undergoes homolytic cleavage in the presence of light or heat, forming two highly reactive chlorine radicals. Propagation occurs in two...
7.7K
Radical Halogenation: Stereochemistry
3.6K
Stereochemistry is the study of the different spatial arrangements of atoms in a given molecule. The stereochemistry of radical halogenations can be understood from three different situations:
Halogenation to form a new chiral center:
Halogenation to form a new chiral center:
3.6K
Radicals: Electronic Structure and Geometry
4.1K
This lesson delves into the geometry of a radical, which is influenced by the electronic structure of the molecule. The principle is similar to that of a lone pair, where the unpaired electron influences the geometry at the radical center.
Accordingly, the structure of a trivalent radical lies between the geometries of carbocations and carbanions. An sp2-hybridized carbocation is trigonal planar, while an sp3-hybridized carbanion is trigonal pyramidal. Here, the difference in geometry is...
Accordingly, the structure of a trivalent radical lies between the geometries of carbocations and carbanions. An sp2-hybridized carbocation is trigonal planar, while an sp3-hybridized carbanion is trigonal pyramidal. Here, the difference in geometry is...
4.1K


