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优化共价环形纳米盘的生产及其在生理条件下的特性研究。

Optimization of the Production of Covalently Circularized Nanodiscs and Their Characterization in Physiological Conditions.

机构信息

Institute of Atomic and Molecular Sciences , Academia Sinica , 1, Sec. 4, Roosevelt Road , Taipei 10617 , Taiwan.

Institute of Physics , Academia Sinica , No. 128, Sec. 2, Academia Road , Taipei 11529 , Taiwan.

出版信息

Langmuir. 2018 Mar 20;34(11):3525-3532. doi: 10.1021/acs.langmuir.8b00025. Epub 2018 Mar 12.

Abstract

Lipid nanodiscs are widely used platforms for studying membrane proteins in a near-native environment. Lipid nanodiscs made with membrane scaffold proteins (MSPs) in the linear form have been well studied. Recently, a new kind of nanodisc made with MSPs in the circular form, referred to as covalently circularized nanodiscs (cNDs), has been reported to have some possible advantages in various applications. Given the potential of nanodisc technology, researchers in the field are very interested in learning more about this new kind of nanodisc, such as its reproducibility, production yield, and the possible pros and cons of using it. However, research on these issues is lacking. Here, we report a new study on nanodiscs made with circular MSPs, which are produced from a method different from the previously reported method. We show that our novel production method, detergent-assisted sortase-mediated ligation, can effectively avoid high-molecular-weight byproducts and also significantly improve the yield of the target proteins up to around 80% for larger circular MSP constructs. In terms of the application of circular MSPs, we demonstrate that they can be used to assemble nanodiscs using both synthetic lipids and native lipid extract as the source of lipids. We also show that bacteriorhodopsin can be successfully incorporated into this new kind of cND. Moreover, we found that cNDs have improved stability against both heat and high-concentration-induced aggregations, making them more beneficial for related applications.

摘要

脂质纳米盘广泛用于在近天然环境中研究膜蛋白。用线性膜支架蛋白(MSP)制成的脂质纳米盘已经得到了很好的研究。最近,一种新型的用环形 MSP 制成的纳米盘,称为共价环化纳米盘(cNDs),在各种应用中具有一些可能的优势。鉴于纳米盘技术的潜力,该领域的研究人员非常有兴趣了解更多关于这种新型纳米盘的信息,例如其可重复性、产量以及使用它的可能优缺点。然而,关于这些问题的研究还很缺乏。在这里,我们报告了一项关于用环形 MSP 制成的纳米盘的新研究,该研究采用了不同于先前报道方法的方法。我们表明,我们的新型生产方法,即用去污剂辅助的 sortase 介导的连接,可以有效地避免高分子量副产物,并且还可以显著提高目标蛋白的产量,对于较大的环形 MSP 构建体,产量高达约 80%。就环形 MSP 的应用而言,我们证明它们可以用于使用合成脂质和天然脂质提取物作为脂质来源来组装纳米盘。我们还表明,细菌视紫红质可以成功地掺入这种新型的 cND。此外,我们发现 cNDs 对热和高浓度诱导的聚集具有更好的稳定性,这使得它们更有利于相关应用。

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