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生物素标记邻近分析技术(BioID)和 TurboID 技术在蛋白质邻近生物素标记中的比较应用。

Comparative Application of BioID and TurboID for Protein-Proximity Biotinylation.

机构信息

Enabling Technologies Group, Sanford Research, Sioux Falls, SD 57104, USA.

Proteomics Facility, Sanford Burnham Prebys Medical Discovery Institute, La Jolla, CA 92037, USA.

出版信息

Cells. 2020 Apr 25;9(5):1070. doi: 10.3390/cells9051070.

Abstract

BioID is a well-established method for identifying protein-protein interactions and has been utilized within live cells and several animal models. However, the conventional labeling period requires 15-18 h for robust biotinylation which may not be ideal for some applications. Recently, two new ligases termed TurboID and miniTurbo were developed using directed evolution of the BioID ligase and were able to produce robust biotinylation following a 10 min incubation with excess biotin. However, there is reported concern about inducibility of biotinylation, cellular toxicity, and ligase stability. To further investigate the practical applications of TurboID and ascertain strengths and weaknesses compared to BioID, we developed several stable cell lines expressing BioID and TurboID fusion proteins and analyzed them via immunoblot, immunofluorescence, and biotin-affinity purification-based proteomics. For TurboID we observed signs of protein instability, persistent biotinylation in the absence of exogenous biotin, and an increase in the practical labeling radius. However, TurboID enabled robust biotinylation in the endoplasmic reticulum lumen compared to BioID. Induction of biotinylation could be achieved by combining doxycycline-inducible expression with growth in biotin depleted culture media. These studies should help inform investigators utilizing BioID-based methods as to the appropriate ligase and experimental protocol for their particular needs.

摘要

BioID 是一种成熟的蛋白质-蛋白质相互作用鉴定方法,已在活细胞和几种动物模型中得到应用。然而,传统的标记周期需要 15-18 小时才能实现稳健的生物素化,这对于某些应用来说可能并不理想。最近,两种新的连接酶 TurboID 和 miniTurbo 通过对 BioID 连接酶的定向进化开发出来,在与过量生物素孵育 10 分钟后,能够产生稳健的生物素化。然而,据报道,人们对生物素化的诱导性、细胞毒性和连接酶稳定性存在担忧。为了进一步研究 TurboID 的实际应用,并确定与 BioID 相比的优缺点,我们开发了几种表达 BioID 和 TurboID 融合蛋白的稳定细胞系,并通过免疫印迹、免疫荧光和基于生物素亲和纯化的蛋白质组学进行了分析。对于 TurboID,我们观察到蛋白质不稳定的迹象,在没有外源性生物素的情况下持续生物素化,以及实际标记半径增加。然而,与 BioID 相比,TurboID 能够在内质网腔中实现稳健的生物素化。通过将四环素诱导表达与在生物素耗尽的培养基中生长相结合,可以实现生物素化的诱导。这些研究应该有助于告知研究人员根据他们的特定需求选择适当的连接酶和实验方案来使用基于 BioID 的方法。

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