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荧光蛋白及其在海洋生物科学、生物技术和蛋白质组学中的应用。

Fluorescent proteins and their use in marine biosciences, biotechnology, and proteomics.

作者信息

Mocz Gabor

机构信息

Pacific Biosciences Research Center, University of Hawaii, Honolulu, HI 96822, USA.

出版信息

Mar Biotechnol (NY). 2007 May-Jun;9(3):305-28. doi: 10.1007/s10126-006-7145-7. Epub 2007 Mar 19.

Abstract

This review explores the field of fluorescent proteins (FPs) from the perspective of their marine origins and their applications in marine biotechnology and proteomics. FPs occur in hydrozoan, anthozoan, and copepodan species, and possibly in other metazoan niches as well. Many FPs exhibit unique photophysical and photochemical properties that are the source of exciting research opportunities and technological development. Wild-type FPs can be enhanced by mutagenetic modifications leading to variants with optimized fluorescence and new functionalities. Paradoxically, the benefits from ocean-derived FPs have been realized, first and foremost, for terrestrial organisms. In recent years, however, FPs have also made inroads into aquatic biosciences, primarily as genetically encoded fluorescent fusion tags for optical marking and tracking of proteins, organelles, and cells. Examples of FPs and applications summarized here testify to growing utilization of FP-based platform technologies in basic and applied biology of aquatic organisms. Hydra, sea squirt, zebrafish, striped bass, rainbow trout, salmonids, and various mussels are only a few of numerous instances where FPs have been used to address questions relevant to evolutionary and developmental research and aquaculture.

摘要

本综述从荧光蛋白(FPs)的海洋起源及其在海洋生物技术和蛋白质组学中的应用角度,对该领域进行了探索。荧光蛋白存在于水螅纲、珊瑚纲和桡足类动物物种中,也可能存在于其他后生动物生态位中。许多荧光蛋白表现出独特的光物理和光化学性质,这为令人兴奋的研究机会和技术发展提供了源泉。野生型荧光蛋白可通过诱变修饰得到增强,从而产生具有优化荧光和新功能的变体。矛盾的是,源自海洋的荧光蛋白所带来的益处首先在陆生生物中得以实现。然而,近年来,荧光蛋白也已进入水生生物科学领域,主要作为用于蛋白质、细胞器和细胞光学标记与追踪的基因编码荧光融合标签。此处总结的荧光蛋白及其应用实例证明,基于荧光蛋白的平台技术在水生生物的基础生物学和应用生物学中的应用日益广泛。水螅、海鞘、斑马鱼、条纹鲈、虹鳟、鲑科鱼类以及各种贻贝只是众多实例中的一部分,在这些实例中,荧光蛋白已被用于解决与进化和发育研究以及水产养殖相关的问题。

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