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Split-wrmScarlet and split-sfGFP: tools for faster easier fluorescent labeling of endogenous proteins in Caenorhabditis elegans

机译:Split-Wrmscarlet和Split-SFGFP:用于更快的工具更容易荧光标记的内源性蛋白质中的胶带杆菌

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摘要

We create and share a new red fluorophore, along with a set of strains, reagents and protocols, to make it faster and easier to label endogenous Caenorhabditis elegans proteins with fluorescent tags. CRISPR-mediated fluorescent labeling of C. elegans proteins is an invaluable tool, but it is much more difficult to insert fluorophore-size DNA segments than it is to make small gene edits. In principle, high-affinity asymmetrically split fluorescent proteins solve this problem in C. elegans: the small fragment can quickly and easily be fused to almost any protein of interest, and can be detected wherever the large fragment is expressed and complemented. However, there is currently only one available strain stably expressing the large fragment of a split fluorescent protein, restricting this solution to a single tissue (the germline) in the highly autofluorescent green channel. No available C. elegans lines express unbound large fragments of split red fluorescent proteins, and even state-of-the-art split red fluorescent proteins are dim compared to the canonical split-sfGFP protein. In this study, we engineer a bright, high-affinity new split red fluorophore, split-wrmScarlet. We generate transgenic C. elegans lines to allow easy single-color labeling in muscle or germline cells and dual-color labeling in somatic cells. We also describe a novel expression strategy for the germline, where traditional expression strategies struggle. We validate these strains by targeting split-wrmScarlet to several genes whose products label distinct organelles, and we provide a protocol for easy, cloning-free CRISPR/Cas9 editing. As the collection of split-FP strains for labeling in different tissues or organelles expands, we will post updates at doi.org/10.5281/zenodo.3993663
机译:我们创建并分享新的红色荧光团,以及一套菌株,试剂和协议,使其更快,更容易标记具有荧光标签的内源性Caenorhabdisegris蛋白。 Casfr-yegans蛋白的CRISPR介导的荧光标记是一种宝贵的工具,但它比制备小型基因编辑的荧光团尺寸DNA段更难以。原则上,高亲和力不对称分裂荧光蛋白在C.秀丽隐杆线上解决了这个问题:小片段可以快速,很容易地融合到几乎任何感兴趣的蛋白质,并且可以在大碎片表达和补充的任何地方检测到。然而,目前只有一种可用的应变稳定地表达分裂荧光蛋白的大片段,将该溶液限制在高度自发的绿色通道中的单个组织(种系)中。没有可用的C. elegans线表达未结合的分裂红色荧光蛋白的大碎片,甚至最先进的分裂红色荧光蛋白与典型分裂-SFGFP蛋白相比,均匀。在这项研究中,我们工程师亮相,高亲和力的新分裂红色荧光团,Split-Wrmscarlet。我们生成转基因C.杆杆线虫线,以便在肌肉或种系细胞中易于单色标记和体细胞中的双色标记。我们还描述了种系的新表达策略,传统表达策略斗争。我们通过将Split-Wrmscarlet定位为若干基因来验证这些株,其标记不同细胞器的若干基因,我们提供了一种方便,无克隆的CRISPR / CAS9编辑的协议。由于在不同组织或细胞器中标记的分裂式菌株的集合扩展,我们将在Doi.org/10.5281/zenodo.3993663上发布更新

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