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人胎盘特异性-1(PLAC1)可溶性原核表达、纯化及结构分析的优化方案

Optimized protocol for soluble prokaryotic expression, purification and structural analysis of human placenta specific-1(PLAC1).

作者信息

Nazari Mahboobeh, Zarnani Amir-Hassan, Ghods Roya, Emamzadeh Rahman, Najafzadeh Somayeh, Minai-Tehrani Arash, Mahmoudian Jafar, Yousefi Maryam, Vafaei Sedigheh, Massahi Sam, Nejadmoghaddam Mohammad-Reza

机构信息

Monoclonal Antibody Research Center, Avicenna Research Institute, ACECR, Tehran, Iran; Department of Tissue Engineering, School of Advanced Technologies in Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

Department of Immunology, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran; Immunology Research Center, Iran University of Medical Sciences, Tehran, Iran.

出版信息

Protein Expr Purif. 2017 May;133:139-151. doi: 10.1016/j.pep.2017.03.011. Epub 2017 Mar 16.

Abstract

Placenta specific -1 (PLAC1) has been recently introduced as a small membrane-associated protein mainly involved in placental development. Expression of PLAC1 transcript has been documented in almost one hundred cancer cell lines standing for fourteen distinct cancer types. The presence of two disulfide bridges makes difficult to produce functional recombinant PLAC1 in soluble form with high yield. This limitation also complicates the structural studies of PLAC1, which is important for prediction of its physiological roles. To address this issue, we employed an expression matrix consisting of two expression vectors, five different E. coli hosts and five solubilization conditions to optimize production of full and truncated forms of human PLAC1. The recombinant proteins were then characterized using an anti-PLAC1-specific antibody in Western blotting (WB) and enzyme linked immunosorbent assay (ELISA). Structure of full length protein was also investigated using circular dichroism (CD). We demonstrated the combination of Origami™ and pCold expression vector to yield substantial amount of soluble truncated PLAC1 without further need for solubilization step. Full length PLAC1, however, expressed mostly as inclusion bodies with higher yield in Origami™ and Rosetta2. Among solubilization buffers examined, buffer containing Urea 2 M, pH 12 was found to be more effective. Recombinant proteins exhibited excellent reactivity as detected by ELISA and WB. The secondary structure of full length PLAC1 was considered by CD spectroscopy. Taken together, we introduced here a simple, affordable and efficient expression system for soluble PLAC1 production.

摘要

胎盘特异性-1(PLAC1)最近被认为是一种主要参与胎盘发育的小膜相关蛋白。在代表十四种不同癌症类型的近一百种癌细胞系中已记录到PLAC1转录本的表达。由于存在两个二硫键,难以高产率地产生可溶性形式的功能性重组PLAC1。这种限制也使PLAC1的结构研究变得复杂,而该研究对于预测其生理作用很重要。为了解决这个问题,我们采用了由两个表达载体、五种不同的大肠杆菌宿主和五种增溶条件组成的表达矩阵,以优化人PLAC1全长和截短形式的生产。然后使用抗PLAC1特异性抗体通过蛋白质印迹法(WB)和酶联免疫吸附测定法(ELISA)对重组蛋白进行表征。还使用圆二色性(CD)研究了全长蛋白的结构。我们证明了Origami™和pCold表达载体的组合可产生大量可溶性截短的PLAC1,而无需进一步的增溶步骤。然而,全长PLAC1大多以包涵体形式表达,在Origami™和Rosetta2中产量更高。在所研究的增溶缓冲液中,发现含有2 M尿素、pH 12的缓冲液更有效。通过ELISA和WB检测,重组蛋白表现出优异的反应性。通过CD光谱法分析了全长PLAC1的二级结构。综上所述,我们在此介绍了一种用于生产可溶性PLAC1的简单、经济且高效的表达系统。

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