对分泌蛋白质的偏振分类的pH值的依赖性
M J Caplan1, J L Stow, A P Newman
1Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06510.
Nature
|October 15, 1987
概括
表皮细胞精确地将蛋白质分类到特定的膜领域. 狗管 (MDCK) 细胞积极分类底层膜成分,如拉米林和肝素硫酸蛋白糖 (HSPG),用于基底侧释放,需要酸性细胞内环境.
科学领域:
- 细胞生物学 细胞生物学
- 生物化学 生物化学
- 分子生物学分子生物学
背景情况:
- 表皮细胞具有不同的顶端和底侧等离子体膜领域.
- 这一领域的专业化使得膜蛋白的向输送和产品的极化分泌成为可能.
- 狗管 (MDCK) 细胞是研究表皮质极性和蛋白质分类的模型系统.
研究的目的:
- 调查MDCK细胞对底层膜组件的极化分泌背后的机制.
- 为了确定是否释放的胺和硫酸肝素蛋白质糖 (HSPG) 是主动分类或遵循一个默认路径.
- 为了识别参与分泌蛋白质的极化分类的细胞内区.
主要方法:
- 利用MDCK细胞研究底层膜成分的分泌.
- 使用化 (NH4Cl) 操纵细胞内pH值来破坏酸性部分.
- 量化了拉米因和HSPG在顶部和底侧部分的释放.
主要成果:
- 底层膜成分,拉米因和肝素硫酸蛋白糖 (HSPG),主要从MDCK细胞的底侧表面分泌出来.
- 这种极化分泌是一种活跃的分类过程.
- 通过NH4Cl破坏酸性细胞内区间,导致拉米林和HSPG的非极化分泌进入顶端和底侧介质.
结论:
- 由MDCK细胞分泌的底层膜成分的极化分泌是由一个活跃的分类机制介导的.
- 酸性细胞内对于这种分类过程至关重要.
- 由于缺乏功能性酸性体,蛋白质通过默认途径分泌,导致非极化释放.
相关概念视频
pH
The potential of hydrogen (pH) is a measure of the acidity or basicity of a water-based solution determined by the concentration of hydronium ions (H3O+). In one liter of pure water at neutral pH, there are 1×10−7 moles of hydronium ions. However, the extensive range of hydronium ion concentrations present in water-based solutions makes measuring pH in moles cumbersome. Therefore, a pH scale was developed to convert moles of hydronium ions into the negative logarithm of the hydronium ion...
pH
The potential of hydrogen (pH) is a measure of the acidity or basicity of a water-based solution determined by the concentration of hydronium ions (H3O+). In one liter of pure water at neutral pH, there are 1×10−7 moles of hydronium ions. However, the extensive range of hydronium ion concentrations present in water-based solutions makes measuring pH in moles cumbersome. Therefore, a pH scale was developed to convert moles of hydronium ions into the negative logarithm of the hydronium ion...
Stomach pH Regulation
The human body carefully regulates the internal pH of different organs to maintain homeostasis. For example, while the blood plasma maintains a neutral pH of 7, the stomach lumen has an acidic pH of 1.5 - 3.5. The low pH of stomach lumen helps kill pathogens in the food and break down complex food molecules.
The acid-secreting gastric mucosal epithelial cells (parietal cells) lining the stomach lumen maintain the low pH in the lumen. Numerous ion transporters and channels on these parietal...
The acid-secreting gastric mucosal epithelial cells (parietal cells) lining the stomach lumen maintain the low pH in the lumen. Numerous ion transporters and channels on these parietal...
pH Homeostasis
Acid-base homeostasis is essential for maintaining normal physiological activities in humans. The pH of various body fluids is strictly regulated because it is critical for the optimal activity of enzymes involved in metabolic reactions. Enzymes are basically proteins, so, any significant change in pH can affect their structure and activity. In humans, pH is regulated using three primary mechanisms— chemical buffer systems, respiratory regulation, and renal regulation.
Respiratory Regulation of...
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Extraction: Effects of pH
Consider a neutral form of an amine, B, with a partition coefficient, K, in a liquid mixture containing organic and aqueous phases. The pH of the aqueous phase affects the charge on acidic and basic solutes, and the charged form is usually more soluble in the aqueous phase. Suppose the conjugate acid form of the amine is soluble only in the aqueous phase while the base form is soluble in both phases. Then the distribution coefficient, D, can be given as the ratio of amine concentration in the...
Renal Regulation of Acid-Base Balance
Metabolic reactions in the body produce nonvolatile acids, such as sulfuric acid, which generate an acid load of approximately 1 mEq of H+ per kilogram of body weight daily. Excreting H+ in the urine is essential to balance this acid load.
In the kidneys, cells within the proximal convoluted tubules (PCT) and the collecting ducts secrete hydrogen ions (H+) into the tubular fluid. Specifically, in the PCT, Na+/H+ antiporters secrete H+ while reabsorbing Na+.
However, the intercalated cells in...
In the kidneys, cells within the proximal convoluted tubules (PCT) and the collecting ducts secrete hydrogen ions (H+) into the tubular fluid. Specifically, in the PCT, Na+/H+ antiporters secrete H+ while reabsorbing Na+.
However, the intercalated cells in...


