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神经节苷脂影响依赖于环境温度的膜通道活性。

Gangliosides affect membrane-channel activities dependent on ambient temperature.

作者信息

Kappel T, Anken R H, Hanke W, Rahmann H

机构信息

Zoological Institute, University of Stuttgart-Hohenheim, Stuttgart, Germany.

出版信息

Cell Mol Neurobiol. 2000 Oct;20(5):579-90. doi: 10.1023/a:1007063928449.

Abstract
  1. The functional properties of biological membranes depend on their molecular composition. In regard to this, charged glycosphingolipids play an outstanding role in the functional adaptation of membranes to different temperatures. 2. In order to shed some light on the respective functional properties of complex membraneous glycosphingolipids, the effects of altered temperatures (5-40 degrees C) on planar lipid bilayers made from diphytanoylphosphatidylcholine (DPPC) and alamethicin as an ion channel was analyzed in the presence of either a sialoglycosphingolipid (less polar disialoganglioside GD1a or highly polar tetrasialoganglioside GQ1b) or phosphatidylserine (PS; as control). 3. Different to the control bilayers made from DPPC or DPPC + PS, the bilayers containing gangliosides had specific maxima in alamethicin conductance and stabile life times. Changes in pore-state conductances indicate structural effects based on an interaction of the large (negatively charged) ganglioside headgroups with the alamethicin pores. 4. The results concerning open time and closed time of channels seem to be based on the gangliosides changing the viscosity of the bilayer and possibly introducing phase transitions. 5. Thus, the findings suggest that gangliosides (1) directly affect channel molecules via their headgroups and (2) may additionally affect the fluidity of membranes in order to maintain membrane homeoviscosity in areas surrounding ion channels independent from the environmental temperature. 6. The effects of gangliosides may be of special interest in describing the ability of neuronal adaptation of vertebrates to temperature and more general regarding the functional adaptation of neurons.
摘要
  1. 生物膜的功能特性取决于其分子组成。就此而言,带电糖鞘脂在膜对不同温度的功能适应中发挥着突出作用。2. 为了阐明复杂膜糖鞘脂各自的功能特性,在存在唾液酸糖鞘脂(极性较小的二唾液酸神经节苷脂GD1a或极性较高的四唾液酸神经节苷脂GQ1b)或磷脂酰丝氨酸(PS;作为对照)的情况下,分析了温度变化(5 - 40摄氏度)对由二植烷酰磷脂酰胆碱(DPPC)和作为离子通道的阿拉米辛制成的平面脂质双层的影响。3. 与由DPPC或DPPC + PS制成的对照双层不同,含有神经节苷脂的双层在阿拉米辛电导和稳定寿命方面有特定的最大值。孔态电导的变化表明基于大的(带负电荷的)神经节苷脂头部基团与阿拉米辛孔相互作用的结构效应。4. 关于通道开放时间和关闭时间的结果似乎基于神经节苷脂改变双层的粘度并可能引入相变。5. 因此,研究结果表明神经节苷脂(1)通过其头部基团直接影响通道分子,(2)可能还会影响膜的流动性,以便在离子通道周围区域维持膜的等粘滞性,而与环境温度无关。6. 神经节苷脂的作用在描述脊椎动物神经元对温度的适应能力以及更广泛地关于神经元的功能适应方面可能特别有意义。

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