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関連する概念動画

Facilitated Diffusion01:16

Facilitated Diffusion

1.6K
The plasma membrane, a critical structure in cellular biology, houses an array of transporters, or carrier proteins, interspersed within its lipid bilayer. These proteins play a crucial role in solute transport through facilitated diffusion, a form of passive diffusion that uses transporters to move the molecules across the membrane.
In this process, substrates such as organic compounds and ions interact with a transporter on one side, triggering conformational changes in proteins that enable...
1.6K
Carrier-Mediated Transport01:06

Carrier-Mediated Transport

1.5K
Carrier-mediated transport is a pivotal process in drug absorption, particularly for lipid-insoluble drugs, and encompasses facilitated diffusion and active transport. Facilitated diffusion allows drugs to move along their concentration gradient without energy expenditure, while active transport utilizes ATP to drive drug movement against this gradient.
Active transport involves two types of membrane-spanning transporters: uptake and efflux. Uptake transporters are expressed in the small...
1.5K
Protein Diffusion in the Membrane01:24

Protein Diffusion in the Membrane

6.2K
Proteins show rotational as well as lateral diffusion across the membrane. The lateral diffusion of proteins was confirmed through the cell fusion experiment where mouse and human cells were fused, resulting in hybrid cells. When the human and mouse cells fused, the specific membrane proteins on human and mouse cells were marked with the red and green-fluorescent markers, respectively. Initially, the red and green fluorescence was located on the respective hemisphere of the cell. As time...
6.2K
Drug Absorption Mechanism: Carrier-Mediated Membrane Transport01:19

Drug Absorption Mechanism: Carrier-Mediated Membrane Transport

6.9K
Certain large, lipid-insoluble drug molecules that resemble amino acids, peptides, or glucose, require specialized carrier proteins to facilitate their diffusion across cell membranes. This transport can occur through either facilitated diffusion, which does not require energy input, or active transport, which does require energy input.
Facilitated diffusion is a passive process that utilizes human Solute Carrier (SLC) transporters. These transporters bind to the drug, undergo structural...
6.9K
Facilitated Transport01:19

Facilitated Transport

156.8K
The chemical and physical properties of plasma membranes cause them to be selectively permeable. Since plasma membranes have both hydrophobic and hydrophilic regions, substances need to be able to transverse both regions. The hydrophobic area of membranes repels substances such as charged ions. Therefore, such substances need special membrane proteins to cross a membrane successfully. In  facilitated transport, also known as facilitated diffusion, molecules and ions travel across a...
156.8K
Facilitated Transport01:19

Facilitated Transport

19.3K
The chemical and physical properties of plasma membranes cause them to be selectively permeable. Since plasma membranes have both hydrophobic and hydrophilic regions, substances need to be able to transverse both regions. The hydrophobic area of membranes repels substances such as charged ions. Therefore, such substances need special membrane proteins to cross a membrane successfully. In  facilitated transport, also known as facilitated diffusion, molecules and ions travel across a...
19.3K

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関連する実験動画

Updated: Mar 29, 2026

Rapid, Scalable Assembly and Loading of Bioactive Proteins and Immunostimulants into Diverse Synthetic Nanocarriers Via Flash Nanoprecipitation
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Rapid, Scalable Assembly and Loading of Bioactive Proteins and Immunostimulants into Diverse Synthetic Nanocarriers Via Flash Nanoprecipitation

Published on: August 11, 2018

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エンジニアリングタンパク質コンテナの拡散制限の貨物積載

Reinhard Zschoche1, Donald Hilvert1

  • 1Laboratory of Organic Chemistry, ETH Zürich , 8093 Zürich, Switzerland.

Journal of the American Chemical Society
|December 5, 2015
PubMed
まとめ

設計されたバクテリアのナノコンパートメント (AaLS-13) は,静電的な相互作用によってゲストを効率的に封じ込めます. このプロセスは素早く,反転し,イオン強度によって調節可能であり,新しいホスト-ゲスト複合体を設計するための洞察を提供します.

科学分野:

  • バイオテクノロジー
  • 構造生物学
  • バイオ物理学

背景:

  • AaLS-13のような 設計されたバクテリアのナノコンパートメントは 人工包装の可能性を秘めています
  • 静電相互作用はAALS-13の荷载メカニズムの鍵です.
  • 封じ込めのダイナミクスを理解することは,機能的なホスト-ゲストシステムの開発に不可欠です.

研究 の 目的:

  • AaLS-13システムの封じ込め効率と保持能力を調査する.
  • AaLS-13内のゲストエンカプスレーションを光譜的に定量化するための方法を開発する.
  • AaLS-13の貨物積載過程に影響を与える要因を探求する.

主な方法:

  • 封装モニタリングのためのフォースター共振エネルギー転送 (FRET) ベースの光タンパク質ペアの開発.
  • AaLS-13のカプセル化運動と均衡のスペクトル解析
  • 負荷効率を評価するために,異なったイオン強度と成分濃度のインビトロ試験.

主要な成果:

  • AaLS-13による封じ込めは迅速 (一秒以内) で,逆転可能である.
  • イオン強さはカプセル化の均衡に大きく影響し,集積の問題を克服することができます.

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関連する実験動画

Last Updated: Mar 29, 2026

Rapid, Scalable Assembly and Loading of Bioactive Proteins and Immunostimulants into Diverse Synthetic Nanocarriers Via Flash Nanoprecipitation
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Rapid, Scalable Assembly and Loading of Bioactive Proteins and Immunostimulants into Diverse Synthetic Nanocarriers Via Flash Nanoprecipitation

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  • AaLS-13の殻は完全に硬くないので,ダイナミックな貨物積載が可能である.
  • 結論:

    • AaLS-13はタンパク質包装のための多機能で調整可能なシステムです.
    • FRETベースの方法は,他のカプシド-カルゴ複合体を特徴付けるのに適用できます.
    • 発見は,高度な機能的なナノコンパートメントシステムを設計するための基盤を提供します.