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生成和鉴定一种肌组织特异性诱导型 Cre 斑马鱼品系。

Generation and characterization of a zebrafish muscle specific inducible Cre line.

机构信息

Center for Regenerative Medicine, Massachusetts General Hospital, 185 Cambridge Street, Boston, MA, 02114, USA.

Division of Plastic and Reconstructive Surgery, Massachusetts General Hospital, Boston, MA, 02114, USA.

出版信息

Transgenic Res. 2018 Dec;27(6):559-569. doi: 10.1007/s11248-018-0098-6. Epub 2018 Oct 23.

DOI:10.1007/s11248-018-0098-6
PMID:30353407
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6364321/
Abstract

Zebrafish transgenic lines provide valuable insights into gene functions, cell lineages and cell behaviors during development. Spatiotemporal control over transgene expression is a critical need in many experimental approaches, with applications in loss- and gain-of-function expression, ectopic expression and lineage tracing experiments. The Cre/loxP recombination system is a powerful tool to provide this control and the demand for validated Cre and loxP zebrafish transgenics is high. One of the major challenges to widespread application of Cre/loxP technology in zebrafish is comparatively small numbers of established tissue-specific Cre or CreERT2 lines. We used Tol2-mediated transgenesis to generate Tg(CrymCherry;-1.9mylz2:CreERT2) which provides an inducible CreERT2 source driven by muscle-specific mylz2 promoter. The transgenic specifically labels the trunk and tail skeletal muscles. We assessed the temporal responsiveness of the transgenic by screening with a validated loxP reporter transgenic ubi:Switch. Further, we evaluated the recombination efficiency in the transgenic with varying concentrations of 4-OHT, for different induction time periods and at different stages of embryogenesis and observed that higher recombination efficiency is achieved when embryos are induced with 10 μM 4-OHT from 10-somites or 24 hpf till 48 or 72 hpf. The transgenic is an addition to currently available zebrafish transgenesis toolbox and a significant tool to advance muscle biology studies in zebrafish.

摘要

斑马鱼转基因品系为研究基因功能、细胞谱系和发育过程中的细胞行为提供了有价值的见解。在许多实验方法中,时空控制转基因表达是一个关键需求,应用于功能丧失和功能获得表达、异位表达和谱系追踪实验。Cre/loxP 重组系统是提供这种控制的有力工具,对经过验证的 Cre 和 loxP 斑马鱼转基因的需求很高。Cre/loxP 技术在斑马鱼中广泛应用的主要挑战之一是建立的组织特异性 Cre 或 CreERT2 品系数量相对较少。我们使用 Tol2 介导的转基因技术生成了 Tg(CrymCherry;-1.9mylz2:CreERT2),它提供了一个由肌肉特异性 mylz2 启动子驱动的诱导型 CreERT2 来源。该转基因专门标记躯干和尾部骨骼肌。我们通过筛选经过验证的loxP 报告转基因 ubi:Switch 来评估转基因的时间响应性。此外,我们还评估了不同浓度的 4-OHT、不同诱导时间和不同胚胎发育阶段下,该转基因的重组效率,结果发现,当胚胎在 10 个体节或 24 小时后用 10 μM 4-OHT 诱导至 48 或 72 小时时,重组效率更高。该转基因是目前可用的斑马鱼转基因工具箱的补充,也是推进斑马鱼肌肉生物学研究的重要工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8491/6364321/80eca08be675/nihms-1510356-f0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8491/6364321/640f7efc269e/nihms-1510356-f0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8491/6364321/46d7c1998226/nihms-1510356-f0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8491/6364321/80eca08be675/nihms-1510356-f0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8491/6364321/640f7efc269e/nihms-1510356-f0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8491/6364321/46d7c1998226/nihms-1510356-f0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8491/6364321/80eca08be675/nihms-1510356-f0003.jpg

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Precise Editing of the Zebrafish Genome Made Simple and Efficient.斑马鱼基因组的精确编辑变得简单高效。
Dev Cell. 2016 Mar 21;36(6):654-67. doi: 10.1016/j.devcel.2016.02.015.
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Isolation of Novel CreERT2-Driver Lines in Zebrafish Using an Unbiased Gene Trap Approach.利用无偏基因捕获方法在斑马鱼中分离新型CreERT2驱动系
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Endogenous zebrafish proneural Cre drivers generated by CRISPR/Cas9 short homology directed targeted integration.CRISPR/Cas9 短同源定向靶向整合产生的内源性斑马鱼神经前体细胞 Cre 驱动子。
Sci Rep. 2021 Jan 18;11(1):1732. doi: 10.1038/s41598-021-81239-y.
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Zebrafish Models of Photoreceptor Dysfunction and Degeneration.斑马鱼模型在光感受器功能障碍和变性中的应用。
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