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白蛋白刺激大鼠皮质星形胶质细胞将钙摄取到亚细胞储存中。

Albumin stimulates uptake of calcium into subcellular stores in rat cortical astrocytes.

作者信息

Nadal A, Fuentes E, McNaughton P A

机构信息

Physiology Group, Division of Biomedical Sciences, King's College London, UK.

出版信息

J Physiol. 1996 May 1;492 ( Pt 3)(Pt 3):737-50. doi: 10.1113/jphysiol.1996.sp021342.

Abstract
  1. When albumin from either plasma or serum is applied at low concentrations to cortical astrocytes a decrease in the level of [Ca2+]i is observed. At higher concentrations trains of calcium spikes are seen. 2. Removal of the polar lipids which are normally bound to native albumin abolishes the ability to induce spikes, but the decrease in [Ca2+]i is unaffected. The decrease is abolished by the denaturation of albumin and is not reproduced by a number of other proteins, and is therefore a specific action of albumin. We conclude that native albumin has a dual agonist action: the decrease in [Ca2+]i is induced by the albumin protein molecule, while the spikes are induced by a lipid normally bound to it. 3. The decrease is rapid (fastest tau = 12 s) and the rate is dependent on the concentration of albumin. [Ca2+]i falls from 77 nM to around 34 nM in the presence of saturating levels of albumin, and this level appears to be maintained indefinitely. 4. The decrease is due to an uptake of calcium into subcellular stores, as it is not abolished by removal of external Ca2+ or Na+ but is abolished by thapsigargin and cyclopiazonic acid, which are specific inhibitors of the endoplasmic reticulum Ca(2+)-ATPase. 5. When the state of store filling after albumin application is probed with a pulse of glutamate it can be seen that stores fill with the same time course as the decrease in [Ca2+]i. The low level of [Ca2+]i in albumin must therefore be maintained by a suppression of calcium influx rather than by a continued uptake into stores. 6. The calcium uptake potentiates the efficacy of low concentrations of calcium-releasing agonists such as glutamate and bradykinin by almost an order of magnitude. 7. A possible function for the calcium uptake caused by albumin is to potentiate the production of calcium spike trains by promoting refilling of calcium stores in the intervals between spikes. The uptake may play a role in the response of astrocytes to damage in the CNS.
摘要
  1. 当将来自血浆或血清的白蛋白以低浓度应用于皮质星形胶质细胞时,可观察到细胞内钙离子浓度([Ca2+]i)水平降低。在较高浓度下,则会出现一系列钙峰。2. 去除通常与天然白蛋白结合的极性脂质会消除诱导钙峰的能力,但[Ca2+]i的降低不受影响。白蛋白变性后这种降低会消失,且许多其他蛋白质无法重现这种降低,因此这是白蛋白的一种特异性作用。我们得出结论,天然白蛋白具有双重激动剂作用:[Ca2+]i的降低是由白蛋白蛋白质分子诱导的,而钙峰是由通常与其结合的一种脂质诱导的。3. 这种降低很快(最快时间常数τ = 12秒),且速率取决于白蛋白的浓度。在白蛋白饱和水平存在的情况下,[Ca2+]i从77 nM降至约34 nM,且该水平似乎会无限期维持。4. 这种降低是由于钙被摄取到亚细胞储存中,因为去除细胞外钙离子或钠离子并不能消除这种降低,但曲妥珠单抗和环匹阿尼酸(内质网Ca(2+)-ATPase的特异性抑制剂)可以消除这种降低。5. 当用谷氨酸脉冲探测白蛋白应用后储存的充盈状态时,可以看到储存以与[Ca2+]i降低相同的时间进程充盈。因此,白蛋白中低水平的[Ca2+]i必须通过抑制钙内流而不是通过持续摄取到储存中来维持。6. 钙摄取使低浓度的钙释放激动剂(如谷氨酸和缓激肽)的功效增强了近一个数量级。7. 白蛋白引起的钙摄取的一个可能功能是通过促进钙峰之间的间隔期内钙储存的重新充盈来增强钙峰序列的产生。这种摄取可能在星形胶质细胞对中枢神经系统损伤的反应中起作用。

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