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HyPer家族探针:最新技术水平

HyPer Family Probes: State of the Art.

作者信息

Bilan Dmitry S, Belousov Vsevolod V

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry , Moscow, Russia .

出版信息

Antioxid Redox Signal. 2016 May 1;24(13):731-51. doi: 10.1089/ars.2015.6586. Epub 2016 Jan 11.

Abstract

SIGNIFICANCE

Hydrogen peroxide (H2O2) is not only a key mediator of oxidative stress but also one of the most important cellular second messengers. This small short-lived molecule is involved in the regulation of a wide range of different biological processes, including regulation of cellular signaling pathways. Studying the role of H2O2 in living systems would be challenging without modern approaches. A genetically encoded fluorescent biosensor, HyPer, is one of the most effective tools for this purpose.

RECENT ADVANCES

HyPer has been used by many investigators of redox signaling in various models of different scales: from cytoplasmic subcompartments and single cells to tissues of whole organisms. In many studies, the results obtained using HyPer have enabled a better understanding of the roles of H2O2 in these biological processes. However, much remains to be learned.

CRITICAL ISSUES

In this review, we focus on the uses of HyPer. We provide a general description of HyPer and its improved versions. Separate chapters are devoted to the results obtained by various groups who have used this biosensor for their experiments in living cells and organisms.

FUTURE DIRECTIONS

HyPer is an effective tool for H2O2 imaging in living systems as indicated by the increasing numbers of publications each year since its development. However, this biosensor requires further improvements. In particular, much brighter and more pH-stable versions of HyPer are necessary for imaging in mammalian tissues. Antioxid. Redox Signal. 24, 731-751.

摘要

意义

过氧化氢(H2O2)不仅是氧化应激的关键介质,也是最重要的细胞第二信使之一。这种小的短寿命分子参与多种不同生物过程的调节,包括细胞信号通路的调节。没有现代方法,研究H2O2在生命系统中的作用将具有挑战性。一种基因编码的荧光生物传感器HyPer是实现这一目的最有效的工具之一。

最新进展

许多研究氧化还原信号的研究人员已在各种不同规模的模型中使用HyPer:从细胞质亚区室和单细胞到整个生物体的组织。在许多研究中,使用HyPer获得的结果使人们能够更好地理解H2O2在这些生物过程中的作用。然而,仍有许多有待了解。

关键问题

在本综述中,我们重点关注HyPer的用途。我们对HyPer及其改进版本进行了一般性描述。单独的章节专门介绍了各个小组使用这种生物传感器在活细胞和生物体中进行实验所获得的结果。

未来方向

自开发以来,每年发表的论文数量不断增加,这表明HyPer是在生命系统中进行H2O2成像的有效工具。然而,这种生物传感器需要进一步改进。特别是,需要更亮且更耐pH变化的HyPer版本用于在哺乳动物组织中成像。《抗氧化与氧化还原信号》24,731 - 751。

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