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関連する概念動画

Phase II Conjugation Reactions: Overview01:14

Phase II Conjugation Reactions: Overview

859
Conjugation, a key component of phase II biotransformation reactions, is a vital process in drug detoxification. It involves transferring endogenous substances like glucuronic acid, sulfate, and glycine to drugs or their metabolites formed in phase I reactions. These conjugation reactions, often catalyzed by specific enzymes, transform potentially harmful metabolites into inactive, water-soluble forms easily excreted in urine or bile. By enhancing polarity and eliminating pharmacological...
859
Phase II Reactions: Miscellaneous Conjugation Reactions01:19

Phase II Reactions: Miscellaneous Conjugation Reactions

371
Phase II biotransformations are detoxification mechanisms that conjugate xenobiotics with endogenous substances, neutralizing their toxicity.
A key example involves the conjugation of cyanide ions, which impair cellular respiration and alter hemoglobin into non-oxygen-carrying cyanmethemoglobin. To neutralize this threat, a sulfur atom from thiosulphate is transferred to the cyanide ion, catalyzed by the enzyme rhodanese, resulting in an inactive compound called thiocyanate. The production of...
371
Phase II Reactions: Sulfation and Conjugation with α-Amino Acids01:19

Phase II Reactions: Sulfation and Conjugation with α-Amino Acids

979
Sulfation and α-amino acid conjugation are two critical biotransformation reactions in drug metabolism. Sulfation, a phase II biotransformation reaction, involves adding a polar sulfate group to a drug, enhancing its water solubility and promoting excretion. This process can either co-occur with or occur independently of glucuronidation. Nonmicrosomal sulfotransferase enzymes catalyze the process. The reaction involves 3'-phosphoadenosine-5'-phosphosulfate or PAPS coenzyme...
979
Phase II Reactions: Glutathione Conjugation and Mercapturic Acid Formation01:22

Phase II Reactions: Glutathione Conjugation and Mercapturic Acid Formation

945
Glutathione, a tripeptide made up of glutamate, cysteine, and glycine, is a critical player in the detoxification of drugs and xenobiotics via a process known as glutathione conjugation or mercapturic acid formation. This phase II biotransformation reaction involves the covalent binding of glutathione to a drug or its metabolite, enhancing the compound's water solubility and enabling its excretion.
Several distinctive characteristics distinguish glutathione conjugation from other phase II...
945
Conjugated Proteins02:50

Conjugated Proteins

28.8K
Simple proteins and protein complexes contain only amino acids. In contrast, many other proteins, called conjugated proteins, covalently bond with non-protein moieties.
Nucleoproteins are protein complexes that contain nucleic acids, categorized as deoxyribonucleoproteins (DNPs) or ribonucleoproteins (RNPs) respectively. The nucleosome is a typical example of a DNP where nuclear DNA is associated with histone proteins. The major antigen for the Covid-19 virus SARS-CoV is an RNP that is critical...
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Conjugated Proteins02:50

Conjugated Proteins

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Updated: Feb 6, 2026

Neutron Spin Echo Spectroscopy as a Unique Probe for Lipid Membrane Dynamics and Membrane-Protein Interactions
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Neutron Spin Echo Spectroscopy as a Unique Probe for Lipid Membrane Dynamics and Membrane-Protein Interactions

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フェーズ感受性膜プローブとしての結合ポリイミンダイナマー

Naomi Sakai1, Stefan Matile1

  • 1Department of Organic Chemistry , University of Geneva , CH-1211 Geneva 4, Switzerland.

Journal of the American Chemical Society
|August 30, 2018
PubMed
まとめ

動的ポリイミンは,脂質二層相のセンサーとして作用する. これらのセンサーは,酸性条件下でのオーダーメイドの膜フェーズで凝縮し,膜の緊張下でも相変化を検出することができます.

科学分野:

  • 生物物理化学
  • ポリマー化学
  • 膜生物物理学

背景:

  • 脂質二層膜は,異なる相 (固体有序,液体有序,液体無秩序) を表している.
  • 細胞のプロセスと薬物の投与には 膜相の振る舞いを理解することが重要です
  • 繊細で選択的なセンサを 膜フェーズに開発することは依然として課題です

研究 の 目的:

  • 脂質二層相のための新しい多機能センサーとしてダイナミックポリイミンを導入する.
  • 異なる膜相におけるプッシュプルアミノホルミルフッロエンの自己凝縮行動を調査する.
  • 膜内で形成されるポリイミンの光学および光特性について説明する.

主な方法:

  • プッシュプルアミノフォーミルフローレンの合成
  • 脂質の組成が異なる膀膜の形成
  • 軽度の酸性条件下でのポリイミン自己凝縮の誘導
  • 吸収,円形の二重化 (CD),光消火測定を含むスペクトル分析.

主要な成果:

  • フロレン誘導体のポリイミンへの自己凝縮は,固体秩序と液体秩序の膜段階において特に発生した.
  • 液体不規則な段階ではポリイミンの形成は観察されなかった.

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Mass-Sensitive Particle Tracking to Characterize Membrane-Associated Macromolecule Dynamics
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TIRFM and pH-sensitive GFP-probes to Evaluate Neurotransmitter Vesicle Dynamics in SH-SY5Y Neuroblastoma Cells: Cell Imaging and Data Analysis
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TIRFM and pH-sensitive GFP-probes to Evaluate Neurotransmitter Vesicle Dynamics in SH-SY5Y Neuroblastoma Cells: Cell Imaging and Data Analysis

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Neutron Spin Echo Spectroscopy as a Unique Probe for Lipid Membrane Dynamics and Membrane-Protein Interactions
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Mass-Sensitive Particle Tracking to Characterize Membrane-Associated Macromolecule Dynamics
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Mass-Sensitive Particle Tracking to Characterize Membrane-Associated Macromolecule Dynamics

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TIRFM and pH-sensitive GFP-probes to Evaluate Neurotransmitter Vesicle Dynamics in SH-SY5Y Neuroblastoma Cells: Cell Imaging and Data Analysis
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TIRFM and pH-sensitive GFP-probes to Evaluate Neurotransmitter Vesicle Dynamics in SH-SY5Y Neuroblastoma Cells: Cell Imaging and Data Analysis

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  • ポリイミンの形成は,吸収最大値の赤色シフト,エクシトン結合CD帯の出現,および光消しにつながった.
  • これらのスペクトル変化は,膜相識別のための複数の検出モードを提供した.
  • 結論:

    • ダイナミックポリイミンは,異なる脂質二層相を区別するための効果的な多機能センサーです.
    • pHに依存する自己凝縮メカニズムは,繊細な膜相変異の検出を可能にします.
    • 観測されたスペクトル変化は,膜の張力によって影響を受けるものを含め,膜の性質をモニタリングするための汎用的なツールを提供します.