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利用经典的整联蛋白 GLUT-1 改善膜蛋白的溶解和清洗,以实现最佳的二维电泳。

Improved membrane protein solubilization and clean-up for optimum two-dimensional electrophoresis utilizing GLUT-1 as a classic integral membrane protein.

机构信息

Department of Neural & Behavioral Sciences, College of Medicine, Pennsylvania State University, United States.

出版信息

J Neurosci Methods. 2009 Oct 30;184(1):119-23. doi: 10.1016/j.jneumeth.2009.07.016. Epub 2009 Jul 23.

Abstract

Two-dimensional (2-D) electrophoresis remains a primary resolving tool for proteomic analyses. The final number of proteins resolved by 2-D electrophoresis depends on their respective solubility, size, charge, and isoelectric point. While water-soluble cytosolic proteins have often been well represented in 2-D maps, the same is not true with membrane proteins. Highly hydrophobic in nature, membrane proteins are poorly resolved in 2-D gels due to problems associated primarily with sample preparation. This is of especial concern in neuroscience studies where many proteins of interest are membrane bound. In the current work, we present a substantially improved sample preparation protocol for membrane proteins utilizing the GLUT-1 glucose transporter from brain microvessels as an example of a typical membrane protein. GLUT-1 (SLC2A1; solute carrier family 2 (facilitated glucose transporter), member 1) is a 55kD glycoprotein that contains 12 membrane-spanning alpha helices that impart the protein its characteristic hydrophobicity. GLUT-1 based on its amino acid sequence has a theoretical isoelectric point (pI) of 8.94. Using a combination of the non-ionic detergents, n-dodecyl-beta-maltoside (DDM) and amido sulphobetaine-14 (ASB-14) for sample solubilization, and a modification of the Bio-Rad 2-D clean-up protocol involving trichloroacetic acid (TCA)/acetone, we obtained near complete solubilization of GLUT-1 and greater than 90% recovery of this membrane protein in 1-D and 2-D Western blots. The total number of proteins resolved also increased dramatically in Deep Purple total protein stains using our improved protocol.

摘要

二维电泳仍然是蛋白质组学分析的主要解析工具。二维电泳可分辨的蛋白质数量最终取决于它们各自的溶解性、大小、电荷和等电点。虽然水溶性细胞质蛋白在二维图谱中经常得到很好的体现,但膜蛋白则不然。由于与样品制备相关的主要问题,膜蛋白本质上高度疏水,在二维凝胶中难以得到很好的解析。在神经科学研究中,由于许多感兴趣的蛋白质都是膜结合的,因此这一点尤其令人关注。在当前的工作中,我们提出了一种大大改进的膜蛋白样品制备方案,以脑微血管中的 GLUT-1 葡萄糖转运蛋白为例,说明了一种典型的膜蛋白。GLUT-1(SLC2A1;溶质载体家族 2(易化葡萄糖转运蛋白),成员 1)是一种 55kD 的糖蛋白,包含 12 个跨膜α螺旋,赋予该蛋白其特征性的疏水性。根据其氨基酸序列,GLUT-1 的理论等电点(pI)为 8.94。我们使用非离子去污剂 n-十二基-β-麦芽糖苷(DDM)和两性离子磺基甜菜碱-14(ASB-14)的组合来溶解样品,并对 Bio-Rad 2-D 清洁协议进行修改,涉及三氯乙酸(TCA)/丙酮,我们获得了 GLUT-1 的近乎完全溶解,并在 1-D 和 2-D Western 印迹中超过 90%的这种膜蛋白的回收率。使用我们改进的方案,在 Deep Purple 总蛋白染色中,可分辨的蛋白质总数也显著增加。

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本文引用的文献

1
Two-dimensional electrophoresis of membrane proteins.膜蛋白的二维电泳
Anal Bioanal Chem. 2007 Oct;389(4):1033-45. doi: 10.1007/s00216-007-1514-6. Epub 2007 Aug 7.
3
Ferritin: a novel mechanism for delivery of iron to the brain and other organs.铁蛋白:一种将铁输送到大脑和其他器官的新机制。
Am J Physiol Cell Physiol. 2007 Aug;293(2):C641-9. doi: 10.1152/ajpcell.00599.2006. Epub 2007 Apr 25.

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