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纳米生物发光共振能量转移——一种用于分析蛋白质-蛋白质相互作用的新型生物发光共振能量转移平台。

NanoBRET--A Novel BRET Platform for the Analysis of Protein-Protein Interactions.

作者信息

Machleidt Thomas, Woodroofe Carolyn C, Schwinn Marie K, Méndez Jacqui, Robers Matthew B, Zimmerman Kris, Otto Paul, Daniels Danette L, Kirkland Thomas A, Wood Keith V

机构信息

†Promega Corporation, 2800 Woods Hollow, Madison, Wisconsin 53711, United States.

‡Promega Biosciences Incorporated, 277 Granada Drive, San Luis Obispo, California 93401, United States.

出版信息

ACS Chem Biol. 2015 Aug 21;10(8):1797-804. doi: 10.1021/acschembio.5b00143. Epub 2015 Jun 9.

Abstract

Dynamic interactions between proteins comprise a key mechanism for temporal control of cellular function and thus hold promise for development of novel drug therapies. It remains technically challenging, however, to quantitatively characterize these interactions within the biologically relevant context of living cells. Although, bioluminescence resonance energy transfer (BRET) has often been used for this purpose, its general applicability has been hindered by limited sensitivity and dynamic range. We have addressed this by combining an extremely bright luciferase (Nanoluc) with a means for tagging intracellular proteins with a long-wavelength fluorophore (HaloTag). The small size (19 kDa), high emission intensity, and relatively narrow spectrum (460 nm peak intensity) make Nanoluc luciferase well suited as an energy donor. By selecting an efficient red-emitting fluorophore (635 nm peak intensity) for attachment onto the HaloTag, an overall spectral separation exceeding 175 nm was achieved. This combination of greater light intensity with improved spectral resolution results in substantially increased detection sensitivity and dynamic range over current BRET technologies. Enhanced performance is demonstrated using several established model systems, as well as the ability to image BRET in individual cells. The capabilities are further exhibited in a novel assay developed for analyzing the interactions of bromodomain proteins with chromatin in living cells.

摘要

蛋白质之间的动态相互作用构成了细胞功能时间控制的关键机制,因此有望开发新型药物疗法。然而,在活细胞的生物学相关背景下对这些相互作用进行定量表征在技术上仍然具有挑战性。尽管生物发光共振能量转移(BRET)经常用于此目的,但其普遍适用性受到灵敏度和动态范围有限的阻碍。我们通过将一种极其明亮的荧光素酶(Nanoluc)与一种用长波长荧光团(HaloTag)标记细胞内蛋白质的方法相结合来解决这个问题。小尺寸(19 kDa)、高发射强度和相对较窄的光谱(460 nm峰值强度)使Nanoluc荧光素酶非常适合作为能量供体。通过选择一种高效的红色发射荧光团(635 nm峰值强度)连接到HaloTag上,实现了超过175 nm的整体光谱分离。这种更高的光强度与改进的光谱分辨率的结合,导致检测灵敏度和动态范围比当前的BRET技术大幅提高。使用几种已建立的模型系统证明了性能的增强,以及在单个细胞中对BRET进行成像的能力。在为分析活细胞中溴结构域蛋白与染色质的相互作用而开发的一种新型检测方法中进一步展示了这些能力。

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