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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Enhanced adsorption of Ca-ATPase containing vesicles on a negatively charged solid-supported-membrane for the investigation of membrane transporters
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Enhanced adsorption of Ca-ATPase containing vesicles on a negatively charged solid-supported-membrane for the investigation of membrane transporters

机译:带有Ca-ATPase的囊泡在带负电荷的固体支撑膜上的吸附增强,可用于膜转运蛋白的研究

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摘要

A convenient model system for a biological membrane is a solid-supported membrane (SSM), which consists of a gold-supported alkanethiol|phospholipid bilayer. In combination with a concentration jump method, SSMs have been used for the investigation of several membrane transporters. Vesicles incorporating sarcoplasmic reticulum Ca-ATPase (SERCA) were adsorbed on a negatively charged SSM (octadecanethiol|phosphatidylserine bilayer). The current signal generated by the adsorbed vesicles following an ATP concentration jump was compared to that produced by SERCA-containing vesicles adsorbed on a conventional SSM (octadecanethiol|phosphatidylcholine bilayer). A significantly higher current amplitude was recorded on the serine-based SSM. The adsorption of SERCA-incorporating vesicles on the SSM was then characterized by surface plasmon resonance (SPR). The SPR measurements clearly indicate that in the presence of Ca~(2+) and Mg~(2+), the amount of adsorbed vesicles on the serine-based SSM is about twice that obtained using the conventional SSM, thereby demonstrating that the higher current amplitude recorded on the negatively charged SSM is correlated with a greater quantity of adsorbed vesicles. The enhanced adsorption of membrane vesicles on the PS-based SSM may be useful to study membrane preparations with a low concentration of transport protein generating small current signals, as in the case of various recombinantly expressed proteins.
机译:用于生物膜的便利模型系统是固载膜(SSM),其由金载链烷硫醇磷脂双层构成。结合浓度跳跃法,SSM已用于研究几种膜转运蛋白。结合了肌质网Ca-ATPase(SERCA)的囊泡被吸附在带负电荷的SSM(十八烷硫醇磷脂酰丝氨酸双层)上。将在ATP浓度跃变后由吸附的囊泡产生的电流信号与由常规SSM(十八烷硫醇磷脂酰胆碱双层)吸附的含SERCA的囊泡产生的电流信号进行比较。在基于丝氨酸的SSM上记录到明显更高的电流幅度。然后通过表面等离振子共振(SPR)表征掺入SERCA的囊泡在SSM上的吸附。 SPR测量清楚地表明,在存在Ca〜(2+)和Mg〜(2+)的情况下,丝氨酸基SSM上吸附的囊泡量约为传统SSM的两倍。带负电的SSM上记录的电流振幅与大量吸附的囊泡相关。膜囊泡在基于PS的SSM上的增强吸附可能对研究低浓度转运蛋白而产生小电流信号的膜制剂很有用,例如在各种重组表达蛋白的情况下。

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