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大鼠骨骼肌葡萄糖转运蛋白的重组。

Reconstitution of the glucose transporter from rat skeletal muscle.

作者信息

Wheeler T J, Hauck M A

出版信息

Life Sci. 1987 Jun 15;40(24):2309-16. doi: 10.1016/0024-3205(87)90503-0.

Abstract

As a step in the purification and characterization of the glucose transporter from rat skeletal muscle, we have reconstituted glucose transport activity in liposomes. Plasma membranes were prepared from skeletal muscle which display D-glucose reversible binding of cytochalasin B (10 pmol sites/mg protein; KD = 0.3 microM). Older rats gave a slightly lower specific activity and much lower yield of sites per g muscle than young rats. Glucose transport activity was reconstituted into liposomes by the freeze-thaw procedure using either plasma membranes directly or cholate-extracted membrane proteins; the latter gave a 50% higher specific activity. The reconstituted transport activity was stereospecific, saturable, and inhibited by cytochalasin B, phloretin, and mercuric chloride. The optimum cholate concentration for extraction and reconstitution of transport activity was about 1.5%, and the highest specific activity of reconstituted transport was seen only at low ratios of protein to lipid in the reconstitution. Chromatography on agarose lentil lectin and agarose ethanethiol doubled both the specific activity of reconstituted transport and the fraction of glucose uptake which was stereospecific. In all of these respects the results were similar to our results with the bovine heart transporter (T. J. Wheeler and M. A. Hauck, Biochim. Biophys. Acta 818, 171-182 (1985)). Our findings suggest that further purification procedures developed for the heart transporter may be applicable to the skeletal muscle transporter as well.

摘要

作为大鼠骨骼肌葡萄糖转运蛋白纯化和特性鉴定的一个步骤,我们已在脂质体中重建了葡萄糖转运活性。从骨骼肌制备质膜,其显示细胞松弛素B的D-葡萄糖可逆结合(10 pmol位点/毫克蛋白质;KD = 0.3 microM)。老年大鼠的比活性略低,每克肌肉的位点产量比年轻大鼠低得多。通过冻融程序,使用直接的质膜或胆酸盐提取的膜蛋白将葡萄糖转运活性重建到脂质体中;后者的比活性高50%。重建的转运活性具有立体特异性、可饱和性,并受到细胞松弛素B、根皮素和氯化汞的抑制。用于提取和重建转运活性的最佳胆酸盐浓度约为1.5%,并且仅在重建中蛋白质与脂质的低比例下才观察到重建转运的最高比活性。在琼脂糖扁豆凝集素和琼脂糖乙硫醇上进行色谱分离,使重建转运的比活性和立体特异性葡萄糖摄取的比例都增加了一倍。在所有这些方面,结果与我们对牛心转运蛋白的研究结果相似(T. J. Wheeler和M. A. Hauck,Biochim. Biophys. Acta 818,171 - 182(1985))。我们的发现表明,为心脏转运蛋白开发的进一步纯化程序可能也适用于骨骼肌转运蛋白。

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