Zhong Guitao, Zhu Qinlong, Li Yingxin, Liu Yaoguang, Wang Hao
College of Life Sciences, South China Agricultural UniversityGuangzhou, China.
State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, South China Agricultural UniversityGuangzhou, China.
Front Plant Sci. 2017 Jun 20;8:1071. doi: 10.3389/fpls.2017.01071. eCollection 2017.
Chimeric fluorescent fusion proteins have been employed as a powerful tool to reveal the subcellular localizations and dynamics of proteins in living cells. Co-expression of a fluorescent fusion protein with well-known organelle markers in the same cell is especially useful in revealing its spatial and temporal functions of the protein in question. However, the conventional methods for co-expressing multiple fluorescent tagged proteins in plants have the drawbacks of low expression efficiency, variations in the expression level and time-consuming genetic crossing. Here, we have developed a novel robust system that allows for high-efficient co-expression of multiple chimeric fluorescent fusion proteins in plants in a time-saving fashion. This system takes advantage of employing a single expression vector which consists of multiple semi-independent expressing cassettes for the protein co-expression thereby overcoming the limitations of using multiple independent expressing plasmids. In addition, it is a highly manipulable DNA assembly system, in which modification and recombination of DNA molecules are easily achieved through an optimized one-step assembly reaction. By employing this effective system, we demonstrated that co-expression of two chimeric fluorescent fusion reporter proteins of vacuolar sorting receptor and secretory carrier membrane protein gave rise to their perspective subcellular localizations in plants via both transient expression and stable transformation. Thus, we believed that this technical advance represents a promising approach for multi-color-protein co-expression in plant cells.
嵌合荧光融合蛋白已被用作一种强大的工具,以揭示活细胞中蛋白质的亚细胞定位和动态变化。在同一细胞中,将荧光融合蛋白与知名细胞器标记物共表达,对于揭示所研究蛋白质的时空功能特别有用。然而,在植物中共表达多个荧光标记蛋白的传统方法存在表达效率低、表达水平变化以及遗传杂交耗时等缺点。在此,我们开发了一种新型的强大系统,该系统能够以省时的方式在植物中高效共表达多个嵌合荧光融合蛋白。该系统利用单个表达载体,该载体由多个用于蛋白质共表达的半独立表达盒组成,从而克服了使用多个独立表达质粒的局限性。此外,它是一个高度可操作的DNA组装系统,其中通过优化的一步组装反应可以轻松实现DNA分子的修饰和重组。通过使用这个有效的系统,我们证明了液泡分选受体和分泌载体膜蛋白的两种嵌合荧光融合报告蛋白通过瞬时表达和稳定转化在植物中产生了它们各自预期的亚细胞定位。因此,我们认为这一技术进步代表了一种在植物细胞中进行多色蛋白共表达的有前景的方法。