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Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids02:04

Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids

Diols are compounds with two hydroxyl groups. In addition to syn dihydroxylation, diols can also be synthesized through the process of anti dihydroxylation. The process involves treating an alkene with a peroxycarboxylic acid to form an epoxide. Epoxides are highly strained three-membered rings with oxygen and two carbons occupying the corners of an equilateral triangle. This step is followed by ring-opening of the epoxide in the presence of an aqueous acid to give a trans diol.
Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide02:44

Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide

Alkenes are converted to 1,2-diols or glycols through a process called dihydroxylation. It involves the addition of two hydroxyl groups across the double bond with two different stereochemical approaches, namely anti and syn. Dihydroxylation using osmium tetroxide progresses with syn stereochemistry.
Hydroboration-Oxidation of Alkenes03:08

Hydroboration-Oxidation of Alkenes

In addition to the oxymercuration–demercuration method, which converts the alkenes to alcohols with Markovnikov orientation, a complementary hydroboration-oxidation method yields the anti-Markovnikov product. The hydroboration reaction, discovered in 1959 by H.C. Brown, involves the addition of a B–H bond of borane to an alkene giving an organoborane intermediate. The oxidation of this intermediate with basic hydrogen peroxide forms an alcohol.
Autoxidation of Ethers to Peroxides and Hydroperoxides02:23

Autoxidation of Ethers to Peroxides and Hydroperoxides

Ethers represent a class of chemical compounds that become more dangerous with prolonged storage because they tend to form explosive peroxides when standing in the air. Autoxidation is the spontaneous oxidation of a compound in air. In the presence of oxygen, ethers slowly oxidize to form hydroperoxides and dialkyl peroxides.
Oxidation of Phenols to Quinones01:17

Oxidation of Phenols to Quinones

In the presence of oxidizing agents, phenols are oxidized to quinones. Quinones can be easily reduced back to phenols using mild reducing agents. The electron-donating hydroxyl group enhances the reactivity of the aromatic ring, enabling oxidation of the ring even in the absence of an α hydrogen.
o-hydroxy phenols are oxidized to o-quinones and p-hydroxy phenols to p-quinones. Such redox reactions involve the transfer of two electrons and two protons. The reversible redox property is crucial in...
Regioselectivity and Stereochemistry of Hydroboration02:36

Regioselectivity and Stereochemistry of Hydroboration

A significant aspect of hydroboration–oxidation is the regio- and stereochemical outcome of the reaction.
Hydroboration proceeds in a concerted fashion with the attack of borane on the π bond, giving a cyclic four-centered transition state. The –BH2 group is bonded to the less substituted carbon and –H to the more substituted carbon. The concerted nature requires the simultaneous addition of –H and –BH2 across the same face of the alkene giving syn stereochemistry.

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関連する実験動画

Updated: Jun 19, 2026

Light-driven Enzymatic Decarboxylation
09:58

Light-driven Enzymatic Decarboxylation

Published on: May 22, 2016

ヒドロキシエチルフォスフォナートダイオキシゲナゼによる水素酸化.

John T Whitteck1, Robert M Cicchillo, Wilfred A van der Donk

  • 1Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Street, Urbana, Illinois 61801, USA.

Journal of the American Chemical Society
|October 21, 2009
PubMed
まとめ

ハイドロキシエチルフォスフォナート酸化酵素 (HEPD) は分子酸素を使用して,2-ヒドロキシエチルフォスフォナート (2-HEP) を割ります. 酵素は水素過酸化を経て,その後クリージー再配列が行われるが,最初の水素過酸化は行われない.

科学分野:

  • バイオケミストリー バイオケミストリー
  • 酵素学 酵素学とは
  • 化学生物学 化学生物学とは

背景:

  • ハイドロキシエチルフォスフォン酸二酸化酵素 (HEPD) は,ユニークなO2依存性炭素-炭素結合の分裂を触媒する酵素です.
  • HEPDの反応メカニズムは議論されており,2つの経路が提案されています:初期ヒドロキシル化または初期ヒドロペロキシル化,続いてクリージー再配置.

研究 の 目的:

  • 2-ヒドロキシエチルホスフォナート (2-HEP) の分裂におけるヒドロキシエチルホスフォナート酸化酵素酵素 (HEPD) の正確なメカニズムを解明する.
  • 提案された反応経路を,基質の同類物を合成し,試験することによって区別する.

主な方法:

  • ヒドロキシメチルフォスフォナートと1ヒドロキシエチルフォスフォナートを含む基板類の合成.
  • 合成アナログを用いた酵素測定法で,反応産物を観察する.
  • メカニズム的経路を決定するために反応産物の分析.

主要な成果:

  • ハイドロキシメチルフォスフォネートは,リン酸塩とホルメットに変換された.
  • 1-hydroxyethylphosphonateは,酵素阻害剤であるアセチルフォスファートを生成しました.
  • (2R) -ヒドロキシプロピルフォスホネートは分割され,2-オキシプロピルフォスホネートとヒドロキシメチルフォスホネートを生成しました.

さらに関連する動画

Benchtop Immobilized Metal Affinity Chromatography, Reconstitution and Assay of a Polyhistidine Tagged Metalloenzyme for the Undergraduate Laboratory
08:02

Benchtop Immobilized Metal Affinity Chromatography, Reconstitution and Assay of a Polyhistidine Tagged Metalloenzyme for the Undergraduate Laboratory

Published on: August 23, 2018

Anaerobic Protein Purification and Kinetic Analysis via Oxygen Electrode for Studying DesB Dioxygenase Activity and Inhibition
08:31

Anaerobic Protein Purification and Kinetic Analysis via Oxygen Electrode for Studying DesB Dioxygenase Activity and Inhibition

Published on: October 3, 2018

関連する実験動画

Last Updated: Jun 19, 2026

Light-driven Enzymatic Decarboxylation
09:58

Light-driven Enzymatic Decarboxylation

Published on: May 22, 2016

Benchtop Immobilized Metal Affinity Chromatography, Reconstitution and Assay of a Polyhistidine Tagged Metalloenzyme for the Undergraduate Laboratory
08:02

Benchtop Immobilized Metal Affinity Chromatography, Reconstitution and Assay of a Polyhistidine Tagged Metalloenzyme for the Undergraduate Laboratory

Published on: August 23, 2018

Anaerobic Protein Purification and Kinetic Analysis via Oxygen Electrode for Studying DesB Dioxygenase Activity and Inhibition
08:31

Anaerobic Protein Purification and Kinetic Analysis via Oxygen Electrode for Studying DesB Dioxygenase Activity and Inhibition

Published on: October 3, 2018

結論:

  • 結果は,基板の初期水酸化を含むメカニズムを強く支持しています.
  • 反応は,基の移動集団によるクリージー再配置を経由して進みます.
  • 分子酸素のO−O結合は,基板活性化まで無傷のままである.