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関連する概念動画

Drug-Receptor Bonds01:25

Drug-Receptor Bonds

Drug-receptor bonds are formed through various chemical forces when drugs interact with target cells. Covalent bonds, strong and irreversible, are exemplified by DNA-alkylating anticancer agents that inhibit cell division. However, such irreversible drug binding lacks selectivity and can modify the DNA of the surrounding healthy cells. Covalent binding often contributes to tissue toxicity, as seen with chloroform and paracetamol metabolites binding to the liver, causing hepatotoxicity.
In...
Targets for Drug Action: Overview01:26

Targets for Drug Action: Overview

Drugs target macromolecules to modify ongoing cellular processes. Primary drug targets include receptors, ion channels, transporters, and enzymes.
Receptors are either membrane-spanning or intracellular proteins, which upon binding a ligand, get activated and transmit the signal downstream to elicit a response. Drugs bind receptors, either mimicking the action of endogenous ligands or blocking the receptor activity to bring about a modified response. Nearly 35% of approved drugs target the G...
Ligand Binding and Linkage00:49

Ligand Binding and Linkage

Allosteric proteins have more than one ligand binding site; the binding of a ligand to any of these sites influences the binding of ligands to the other sites. When a protein is allosteric, its binding sites are called coupled or linked.  In the case of enzymes, the site that binds to the substrate is known as the active site and the other site is known as the regulatory site. When a ligand binds to the regulatory site, this leads to conformational changes in the protein that can influence the...
ATP and Macromolecule Synthesis01:28

ATP and Macromolecule Synthesis

Biological macromolecules are organic compounds, predominantly composed of carbon atoms. The carbon atoms are covalently bonded with hydrogen, oxygen, nitrogen, and other minor elements. There are four major biological macromolecule classes: carbohydrates, lipids, proteins, and nucleic acids.
Most macromolecules are composed of single subunits, or building blocks, called monomers. The monomers combine with each other using covalent bonds to form larger molecules known as polymers.
Conversion of...
The Equilibrium Binding Constant and Binding Strength02:18

The Equilibrium Binding Constant and Binding Strength

The equilibrium binding constant (Kb) quantifies the strength of a protein-ligand interaction. Kb can be calculated as follows when the reaction is at equilibrium:
Complexometric Titration: Ligands00:43

Complexometric Titration: Ligands

Different monodentate and polydentate ligands are used as complexing agents in complexometric titration reactions. The formation of complexes by mono- and bidentate ligands involves two or more intermediate steps, limiting their use as complexing agents. In comparison, polydentate ligands can form complexes with metal ions in a single-step process, facilitating sharper end points. This means polydentate ligands, such as amino carboxylic acid derivatives, are most commonly employed in...

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関連する実験動画

Updated: Jul 12, 2026

Constructing Cyclic Peptides Using an On-Tether Sulfonium Center
07:11

Constructing Cyclic Peptides Using an On-Tether Sulfonium Center

Published on: September 28, 2022

合成マクロサイクル化合物によるイオン結合.

J J Christensen, J O Hill, R M Izatt

    Science (New York, N.Y.)
    |October 29, 1971
    PubMed
    まとめ

    合成マクロサイクルは,調節可能なイオン結合特性を提供します. 研究者はこれらの分子を特定のカチオンとアニオン相互作用のために設計することができ,協調化学と溶液金属複合化における新しい道を開くことができます.

    科学分野:

    • 協調化化学について
    • 超分子化学 超分子化学

    背景:

    • 合成マクロサイクルの分子は,独特の水性性空洞と,水嫌外観を持っています.
    • 最近の進歩は,新しいマクロサイクル化合物を合成することに焦点を当てていますが,実際的な応用はほとんど未開拓のままです.

    研究 の 目的:

    • 特定のカチオンおよびアニオン結合特性を設計するための合成マクロサイクルの可能性を調査する.
    • 構造変化がイオン選択性と結合特性にどのように影響するかを調査する.

    主な方法:

    • サイズ選択的なイオン収納を達成するためにマクロサイクルの空洞サイズを体系的に変化させる.
    • 電気静的および共振相互作用を制御するために,調整原子 (例えば,酸素,硫黄,窒素) の数と種類を調整する.
    • 有機溶剤におけるイオン複合体の溶解性を高めるため,サイドチェーンによる水嫌外部の改変.

    主要な成果:

    • 前もって選択されたイオン結合特性を有するマクロサイクルを合成する能力が実証されています.
    • 座標原子の種類と金属-リガンド結合のイオン性/共振性との相関関係が確立された.
    • サイクルポリエーテルやサイクルポリアミンのような自然分子の構造模倣を披露した.

    結論:

    さらに関連する動画

    Structure-Guided Design and Development of Novel Cyclophilin A Inhibitors and Ganoderiol-F Derivatives: An In-Silico Approach
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    Structure-Guided Design and Development of Novel Cyclophilin A Inhibitors and Ganoderiol-F Derivatives: An In-Silico Approach

    Published on: June 23, 2026

    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

    関連する実験動画

    Last Updated: Jul 12, 2026

    Constructing Cyclic Peptides Using an On-Tether Sulfonium Center
    07:11

    Constructing Cyclic Peptides Using an On-Tether Sulfonium Center

    Published on: September 28, 2022

    Structure-Guided Design and Development of Novel Cyclophilin A Inhibitors and Ganoderiol-F Derivatives: An In-Silico Approach
    10:01

    Structure-Guided Design and Development of Novel Cyclophilin A Inhibitors and Ganoderiol-F Derivatives: An In-Silico Approach

    Published on: June 23, 2026

    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

    • 合成マクロサイクルは,溶液中の選択的な金属複合化のための多用途のプラットフォームを代表しています.
    • 構造的調節性は,イオン結合を正確に制御し,生物学的システムを模倣し,新しい化学アプリケーションを可能にします.