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线粒体中重组天冬氨酸/谷氨酸载体的不对称取向。

Asymmetric orientation of the reconstituted aspartate/glutamate carrier from mitochondria.

作者信息

Dierks T, Krämer R

机构信息

Institut für Physikalische Biochemie, Universität München, F.R.G.

出版信息

Biochim Biophys Acta. 1988 Jan 13;937(1):112-26. doi: 10.1016/0005-2736(88)90233-7.

Abstract

A partially purified preparation of the aspartate/glutamate carrier from bovine heart mitochondria was reconstituted into liposomal membranes by chromatography on hydrophobic ion exchange resins. Based on the favorable conditions of this reconstituted system the transmembrane orientation of the inserted carrier protein could be determined by functional analysis. For reliable measurement of the reconstituted aspartate-glutamate exchange activity an optimized inhibitor-stop technique using pyridoxal phosphate was developed. By simultaneous application of both forward and backward exchange experiments the practical usefulness of the reconstituted system could be extended to investigations including variation of internal and external substrate concentrations over a wide range. Thereby a complete set of Km values for both aspartate and glutamate at both the internal and external side of the proteoliposomes could be established. These experiments led to the following results and conclusions: (i) The observed substrate affinities are clearly different for the two different membrane sides both for aspartate (external 50 microM, internal 3 mM) and glutamate (external about 200 microM, internal 3 mM). (ii) The exclusive presence of only one type of transport affinity for every single substrate at one side of the liposomal membrane clearly demonstrates the asymmetric orientation of the functionally active carrier protein molecules. (iii) When comparing the values of these constants with published data obtained in mitochondria, an inside-out orientation of the aspartate/glutamate carrier after isolation and reinsertion into liposomes is strongly suggested.

摘要

通过在疏水离子交换树脂上进行色谱分离,将牛心线粒体天冬氨酸/谷氨酸载体的部分纯化制剂重组到脂质体膜中。基于该重组系统的有利条件,可通过功能分析确定插入的载体蛋白的跨膜方向。为了可靠地测量重组的天冬氨酸-谷氨酸交换活性,开发了一种使用磷酸吡哆醛的优化抑制剂终止技术。通过同时进行正向和反向交换实验,重组系统的实际用途可扩展到包括在宽范围内改变内部和外部底物浓度的研究。由此可以建立蛋白脂质体内部和外部天冬氨酸和谷氨酸的完整Km值集。这些实验得出了以下结果和结论:(i)对于天冬氨酸(外部50 microM,内部3 mM)和谷氨酸(外部约200 microM,内部3 mM),在两个不同膜侧观察到的底物亲和力明显不同。(ii)脂质体膜一侧每种单一底物仅存在一种运输亲和力,这清楚地证明了功能活性载体蛋白分子的不对称方向。(iii)当将这些常数的值与线粒体中获得的已发表数据进行比较时,强烈表明天冬氨酸/谷氨酸载体在分离并重新插入脂质体后是由内向外的方向。

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