Recent biomedical advances enabled by HaloTag technology

Weiyu Chen, Muhsin H Younis, Zhongkuo Zhao, W. Cai
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引用次数: 3

Abstract

The knowledge of interactions among functional proteins helps researchers understand disease mechanisms and design potential strategies for treatment. As a general approach, the fluorescent and affinity tags were employed for exploring this field by labeling the Protein of Interest (POI). However, the autofluorescence and weak binding strength significantly reduce the accuracy and specificity of these tags. Conversely, HaloTag, a novel self-labeling enzyme (SLE) tag, could quickly form a covalent bond with its ligand, enabling fast and specific labeling of POI. These desirable features greatly increase the accuracy and specificity, making the HaloTag a valuable system for various applications ranging from imaging to immobilization of POI. Notably, the HaloTag technique has already been successfully employed in a series of studies with excellent efficiency. In this review, we summarize the development of HaloTag and recent advanced investigations associated with HaloTag, including in vitro imaging (e.g., POI imaging, cellular condition monitoring, microorganism imaging, system development), in vivo imaging, biomolecule immobilization (e.g., POI collection, protein/nuclear acid interaction and protein structure analysis), targeted degradation (e.g., L-AdPROM), and more. We also present a systematic discussion regarding the future direction and challenges of the HaloTag technique.
HaloTag技术使生物医学取得了最新进展
功能蛋白之间相互作用的知识有助于研究人员了解疾病机制并设计潜在的治疗策略。一般采用荧光和亲和标签标记感兴趣蛋白(POI)来探索这一领域。然而,自身荧光和弱结合强度显著降低了这些标签的准确性和特异性。相反,HaloTag是一种新型的自标记酶(SLE)标签,它可以快速地与其配体形成共价键,从而实现对POI的快速和特异性标记。这些理想的特性大大提高了准确性和特异性,使HaloTag成为从成像到POI固定的各种应用的有价值的系统。值得注意的是,HaloTag技术已经成功地应用于一系列高效的研究中。在这篇综述中,我们总结了HaloTag的发展以及与HaloTag相关的最新研究进展,包括体外成像(例如POI成像、细胞状态监测、微生物成像、系统开发)、体内成像、生物分子固定化(例如POI收集、蛋白质/核酸相互作用和蛋白质结构分析)、靶向降解(例如L-AdPROM)等。我们还对HaloTag技术的未来方向和挑战进行了系统的讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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