作为膜离子载体的卡特科尔
Sofya Kostina Berezin1, Jeffery T Davis
1Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, USA.
Journal of the American Chemical Society
|February 5, 2009
概括
一种两性双甲基醇作为一个跨膜离子转运器,其活性受到化学结构的影响. 一项新的脂质体检测显示,运输选择性遵循透性的霍夫迈斯特序列.
科学领域:
- 生物物理化学 生物物理化学
- 膜运输是通过膜运输来实现的.
- 超分子化学 超分子化学
背景情况:
- 阳离子的跨膜运输对于生物过程至关重要.
- 开发用于选择性离子运输的合成分子仍然是一个挑战.
- 了解结构-活动关系是设计高效运输器的关键.
研究的目的:
- 为了研究一个两性双甲基醇的跨膜离子运输能力.
- 开发和使用脂质体试验来测量离子运输选择性.
- 为了确定由bis-catechol介导的离子透性的序列.
主要方法:
- 合成一种两双甲基醇 (化合物3).
- 开发一种脂质体检测法,用于监测离子运输.
- 基于霍夫迈斯特系列的离子运输选择性的分析.
主要成果:
- 化合物3有效地将离子通过脂质双层运输.
- 阳离子运输活动取决于甲基醇的替代和两性.
- 脂质体检测表明,运输选择性遵循霍夫迈斯特序列,有利于容易脱水的阳离子.
结论:
- 两双醇可以作为有效的跨膜阴离子载体起作用.
- 开发的脂质体检测提供了一种可靠的方法来评估离子载体选择性.
- 观察到的霍夫迈斯特序列选择性提供了关于化合物3的阳离子传输机制的见解.
更多相关视频
07:47A Proteoliposome-Based Efflux Assay to Determine Single-molecule Properties of Cl- Channels and Transporters
Published on: April 20, 2015
06:59A Fluorescence-Based Assay of Membrane Potential for High-Throughput Functional Study of Two Endogenous Ion Channels in Two Epithelial Cell Lines
Published on: June 22, 2022
相关概念视频
Active Transport
Active transport is a critical biological process that allows cells to move solutes against an electrochemical gradient. This process requires direct energy input and is characterized by its selectivity, saturability, and susceptibility to competitive inhibition.
Primary active transporters, like Na+, K+ and -ATPase, directly utilize ATP to move ions across the membrane. These transporters play significant roles in various physiological processes. For instance, Na+, K+ and -ATPase maintain...
Primary active transporters, like Na+, K+ and -ATPase, directly utilize ATP to move ions across the membrane. These transporters play significant roles in various physiological processes. For instance, Na+, K+ and -ATPase maintain...
Ion Channels
The movement of ions like sodium, potassium, and calcium into and out of the cell is essential to maintain the electrochemical gradient in living cells. The ion channels—a class of membrane transport proteins—help maintain this ionic gradient for the smooth functioning of physiological activities such as maintaining cell size and volume, conducting nerve impulses, and gas and nutrient exchange.
Ion channels are specialized integral membrane proteins on the plasma membrane that allow specific...
Ion channels are specialized integral membrane proteins on the plasma membrane that allow specific...
Membrane Transporters
Transporters are essential membrane transport proteins with functions related to cell nutrition, homeostasis, communication, etc. Approximately 7% of all genes in the human genome code for transporters or transporter-related proteins.
Transporters are mainly composed of alpha-helices, built from bundles of ten or more helices traversing the plasma membrane. The solute-binding sites are located midway, where some of the helices are broken or distorted, making space for the binding site through...
Transporters are mainly composed of alpha-helices, built from bundles of ten or more helices traversing the plasma membrane. The solute-binding sites are located midway, where some of the helices are broken or distorted, making space for the binding site through...
The Significance of Membrane Transport
The transport of solutes across the cell membrane is essential for metabolic processes, like maintaining cell size and volume, generating the action potential, exchanging nutrients and gases, etc. Membrane transport can be either passive or active. It can be simple diffusion, facilitated, or mediated transport aided by transport proteins such as transporters and channels.
Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its...
Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its...
The Significance of Membrane Transport
The transport of solutes across the cell membrane is essential for metabolic processes, like maintaining cell size and volume, generating the action potential, exchanging nutrients and gases, etc. Membrane transport can be either passive or active. It can be simple diffusion, facilitated, or mediated transport aided by transport proteins such as transporters and channels.
Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its...
Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its...
Secondary Active Transport
One example of how cells use the energy contained in electrochemical gradients is demonstrated by glucose transport into cells. The ion vital to this process is sodium (Na+), which is typically present in higher concentrations extracellularly than in the cytosol. Such a concentration difference is due, in part, to the action of an enzyme "pump" embedded in the cellular membrane that actively expels Na+ from a cell. Importantly, as this pump contributes to the high concentration of...
