Suppr超能文献

用光散射法测量肌浆网囊泡的离子通透性。

Ionic permeability of sarcoplasmic reticulum vesicles measured by light scattering method.

作者信息

Kometani T, Kasai M

出版信息

J Membr Biol. 1978 Jul 18;41(4):295-308. doi: 10.1007/BF01871994.

Abstract

The volume change of sarcoplasmic retriculum vesicles was followed by measuring the light scattering intensity. When the salt concentration of the suspension of sarcoplasmic reticulum vesicles was increased by using a stopped flow apparatus, the light scattering intensity rapidly increased at the beginning and then decreased. The fast increase in the light scattering intensity is caused by the decrease of the volume of sarcoplasmic reticulum vesicles due to the outflow of water. The following decrease in the light scattering intensity is caused by the increase of the volume due to the inflow of the solutes and water. From the former and the latter rates, the permeation times of water and the solutes could be calculated, respectively. According to the same method, permeation times of various salts were determined. The rate of the inflow of the salts was dependent on the movement of the slower ions, that is, ions move as a pair. In the case of potassium salts, an increase in the permeation rate of the salts was observed when valinomycin was added to the membrane suspensions. From these experiments, as a measure of permeability, half permeation times of various ions and molecules were determined. The following are typical results: water 0.1, Li+ 36, Na+ 26, K+20, Rb+ 16, Cl- 0.4, methanesulfonate 20, phosphate 10.5, oxalate 40 in seconds at room temperature. As a whole, sarcoplasmic reticulum was found to be an anion permeable membrane.

摘要

通过测量光散射强度来跟踪肌浆网囊泡的体积变化。当使用停流装置增加肌浆网囊泡悬浮液的盐浓度时,光散射强度在开始时迅速增加,然后下降。光散射强度的快速增加是由于水流出导致肌浆网囊泡体积减小所致。随后光散射强度的下降是由于溶质和水流入导致体积增加所致。根据前者和后者的速率,可分别计算出水和溶质的渗透时间。按照相同方法,测定了各种盐的渗透时间。盐的流入速率取决于较慢离子的移动,即离子成对移动。在钾盐的情况下,当将缬氨霉素添加到膜悬浮液中时,观察到盐的渗透速率增加。通过这些实验,确定了各种离子和分子的半渗透时间作为渗透性的度量。以下是典型结果:在室温下,水为0.1秒,Li⁺为36秒,Na⁺为26秒,K⁺为20秒,Rb⁺为16秒,Cl⁻为0.4秒,甲磺酸盐为20秒,磷酸盐为10.5秒,草酸盐为40秒。总体而言,发现肌浆网是一种阴离子可渗透膜。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验