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Dynamics of glycolipid domains in the plasma membrane of living cultured neurons, following protein kinase C activation: a study performed by excimer-formation imaging.

机译:蛋白质激酶C激活后,在活的培养神经元的质膜中糖脂结构域的动力学:通过受激准分子形成成像进行的研究。

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摘要

Dynamic changes of glycolipid domains within the plasma membranes of cultured rat cerebellar granule cells have been investigated. For this purpose, a pyrene-labelled derivative of G(M1) ganglioside has been incorporated in the cell plasma membrane, and the rate of excimer formation, directly related to the formation of domains, has been studied by a fluorescence imaging technique (excimer-formation imaging). Fluorescence imaging showed that upon addition of 100 microM glutamate, indirectly inducing the activation of protein kinase C (PKC), glycolipid concentration within domains increases in cell bodies. Comparable effects were exerted by the addition of PMA, directly inducing the activation of PKC. On the contrary, the phorbol ester was not effective in the presence of the specific PKC inhibitor, bisindolylmaleimide. These results suggest that glycolipid-enriched domains are dynamic supramolecular structures affected by membrane-associated events, such as PKC activation. Dynamic changes of domains could be important in modulating their postulated participation in a series of functions, including signal transduction and lipid/protein sorting.
机译:研究了培养的大鼠小脑颗粒细胞质膜内糖脂结构域的动态变化。为此,已在细胞质膜中掺入了side标记的G(M1)神经节苷脂衍生物,并已通过荧光成像技术研究了与域形成直接相关的准分子形成速率(准分子地层成像)。荧光成像显示,添加100 microM谷氨酸后,间接诱导蛋白激酶C(PKC)的激活,域内糖脂浓度在细胞体内增加。通过添加PMA可以直接产生PKC的激活,从而产生可比的效果。相反,佛波醇酯在特定的PKC抑制剂双吲哚基马来酰亚胺存在下无效。这些结果表明,富含糖脂的结构域是受膜相关事件(例如PKC激活)影响的动态超分子结构。域的动态变化可能对调节其假定参与的一系列功能(包括信号转导和脂质/蛋白质分选)具有重要意义。

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