Jove
Visualize
お問い合わせ
JoVE
x logofacebook logolinkedin logoyoutube logo
JoVEについて
概要リーダーシップブログJoVEヘルプセンター
著者向け
出版プロセス編集委員会範囲と方針査読よくある質問投稿
図書館員向け
推薦の声購読アクセスリソース図書館諮問委員会よくある質問
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experimentsアーカイブ
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教員リソースセンター教員サイト
利用規約
プライバシーポリシー
ポリシー

関連する概念動画

Amides to Carboxylic Acids: Hydrolysis01:28

Amides to Carboxylic Acids: Hydrolysis

Amides can undergo either acid-catalyzed hydrolysis or base-promoted hydrolysis through a typical nucleophilic acyl substitution. Each hydrolysis requires severe conditions.
Acid-catalyzed hydrolysis:
Hydrolysis of amides under acidic conditions yields carboxylic acids. Since the reaction occurs slowly, hydrolysis requires the conditions of heat.
The mechanism begins with the protonation of the carbonyl oxygen by the acid catalyst. The protonation makes the amide carbonyl carbon more...
Basicity of Aliphatic Amines01:21

Basicity of Aliphatic Amines

Amines can behave as Brønsted–Lowry bases by accepting a proton from the acid to form corresponding conjugate acids. Due to a lone pair of nonbonding electrons, aliphatic amines can also act as Lewis bases by forming a covalent bond with an electrophile.
To measure the basicity of amines, two conventions are generally used. The first defines Kb as the basicity constant for the deprotonation reaction of water by the amine, as presented in Figure 1. Conventionally, lower Kb indicates higher...
Hydrogen Bonds01:04

Hydrogen Bonds

A hydrogen bond is formed when a weakly positive hydrogen atom already bonded to one electronegative atom (for example, the oxygen in the water molecule) is attracted to another electronegative atom from another polar molecule, such as water (H2O), hydrogen fluoride (HF), or ammonia (NH3). The huge electronegativity difference between the H atom (2.1) and the atom to which it is bonded (4.0 for an F atom, 3.5 for an O atom, or 3.0 for an N atom), combined with the very small size of an H atom...
Hydrogen Bonds00:26

Hydrogen Bonds

Hydrogen BondsHydrogen bonds are weak attractions between atoms that have formed other chemical bonds. One of these atoms is electronegative, like oxygen, and has a partial negative charge. The other is a hydrogen atom that has bonded with another electronegative atom and has a partial positive charge.Hydrogen Bonds Control the World!Because hydrogen has very weak electronegativity when it binds with a strongly electronegative atom, such as oxygen or nitrogen, electrons in the bond are...
Weak Base Solutions03:21

Weak Base Solutions

Some compounds produce hydroxide ions when dissolved by chemically reacting with water molecules. In all cases, these compounds react only partially and so are classified as weak bases. These types of compounds are also abundant in nature and important commodities in various technologies. For example, global production of the weak base ammonia is typically well over 100 metric tons annually, being widely used as an agricultural fertilizer, a raw material for chemical synthesis of other...
Basicity of Heterocyclic Aromatic Amines01:25

Basicity of Heterocyclic Aromatic Amines

Heterocyclic amines, where the N atom is a part of an alicyclic system, are similar in basicity to alkylamines. Interestingly, the heterocyclic amine having a nitrogen atom as part of an aromatic ring has much less basicity than its corresponding alicyclic counterpart. For this reason, as presented in Figure 1, piperidine (pKb = 2.8) is significantly more basic than pyridine (pKb = 8.8).

こちらも読む

関連記事

共著者、ジャーナル、引用グラフによってこの研究に関連する記事。

並び替え
Same author

In silico design and validation of high-affinity RNA aptamers for SARS-CoV-2 comparable to neutralizing antibodies.

eLife·2026
Same author

Nonaqueous Ion Transport through Nanopores: A Nonlinear Behavior Driven by Enhanced Ion Correlation.

Journal of the American Chemical Society·2026
Same author

A hypomorphic mutation in the boron transporter OsBOR1 sensitizes rice panicle development to combined stress of boron deficiency and low temperature.

Plant physiology and biochemistry : PPB·2026
Same author

Structural studies of an antinecroptosis viral:human functional heteroamyloid M45:RIPK3 using SSNMR.

Proceedings of the National Academy of Sciences of the United States of America·2026
Same author

Leveraging a naturally occurring IgM autoantibody to target diabetogenic T cells: a precision medicine approach to type 1 diabetes.

Journal of immunology (Baltimore, Md. : 1950)·2026
Same author

Bile Canalicular Bitter Taste Receptors Inhibit β-Adrenergic Receptor-Induced Lipolysis in Steatotic Hepatocytes.

International journal of molecular sciences·2026

関連する実験動画

Updated: Jun 26, 2026

Hot Biological Catalysis: Isothermal Titration Calorimetry to Characterize Enzymatic Reactions
13:00

Hot Biological Catalysis: Isothermal Titration Calorimetry to Characterize Enzymatic Reactions

Published on: April 4, 2014

尿素が,水害性相互作用に及ぼす作用

Ronen Zangi1, Ruhong Zhou, B J Berne

  • 1Department of Chemistry, Columbia University, 3000 Broadway, New York, New York 10027, USA.

Journal of the American Chemical Society
|January 7, 2009
PubMed
まとめ

尿素 (タンパク質の無性化剤) は,相互作用を弱め,表面活性剤のように作用することで,水害連鎖を展開します. 水よりも強い分散相互作用によって駆動されるこの直接結合メカニズムは,タンパク質の変性化能力を説明する.

科学分野:

  • バイオケミストリー バイオケミストリー
  • 物理化学 物理化学
  • コンピューティング・ケミストリー

背景:

  • 尿素は1世紀以上もの間,タンパク質の非自然化に使用されてきました.
  • 尿素のタンパク質変性作用の正確なメカニズムは不明である.

研究 の 目的:

  • 尿素のタンパク質変性化特性の背後にある分子メカニズムを解明する.
  • 水嫌相互作用と尿素の結合の役割を調査する.

主な方法:

  • 水性尿素溶液中の純粋に水性ポリマー鎖の分子動力学シミュレーション.
  • 尿素溶液中の防水板とグラフェンシートのシミュレーション.
  • 優先結合と相互作用エネルギーの分析.

主要な成果:

  • 尿素 (7M) は,水害性相互作用を弱めることで,水害性鎖を展開する.
  • 尿素は直接,好ましく水害性の表面に結合し,引き寄せを減少させます.
  • エンタルピーは結合と弱まった水害性相互作用を駆動し,レナード・ジョーンズエネルギーパラメータepsilon (((b)) とスケーリングします.

結論:

さらに関連する動画

Development of Inhibitors of Protein-protein Interactions through REPLACE: Application to the Design and Development Non-ATP Competitive CDK Inhibitors
10:33

Development of Inhibitors of Protein-protein Interactions through REPLACE: Application to the Design and Development Non-ATP Competitive CDK Inhibitors

Published on: October 26, 2015

Hydrolysis of a Ni-Schiff-Base Complex Using Conditions Suitable for Retention of Acid-labile Protecting Groups
06:44

Hydrolysis of a Ni-Schiff-Base Complex Using Conditions Suitable for Retention of Acid-labile Protecting Groups

Published on: April 6, 2017

関連する実験動画

Last Updated: Jun 26, 2026

Hot Biological Catalysis: Isothermal Titration Calorimetry to Characterize Enzymatic Reactions
13:00

Hot Biological Catalysis: Isothermal Titration Calorimetry to Characterize Enzymatic Reactions

Published on: April 4, 2014

Development of Inhibitors of Protein-protein Interactions through REPLACE: Application to the Design and Development Non-ATP Competitive CDK Inhibitors
10:33

Development of Inhibitors of Protein-protein Interactions through REPLACE: Application to the Design and Development Non-ATP Competitive CDK Inhibitors

Published on: October 26, 2015

Hydrolysis of a Ni-Schiff-Base Complex Using Conditions Suitable for Retention of Acid-labile Protecting Groups
06:44

Hydrolysis of a Ni-Schiff-Base Complex Using Conditions Suitable for Retention of Acid-labile Protecting Groups

Published on: April 6, 2017

  • 尿素は表面活性剤として作用し,水害性領域に直接結合し,その相互作用を弱める.
  • 水よりも,尿素とタンパク質の成分間の強い魅力的な分散相互作用が,尿素の無性化効果を説明する.
  • 間接的なカオトロプ的メカニズムは,尿素の変性化の主要な原因である可能性は低い.