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利用光转化荧光蛋白的限制预激活转化对活细胞内的结构进行标记。

Labeling cellular structures in vivo using confined primed conversion of photoconvertible fluorescent proteins.

机构信息

Department of Biosystems Science and Engineering (D-BSSE), Eidgenössische Technische Hochschule (ETH) Zurich, Basel, Switzerland.

出版信息

Nat Protoc. 2016 Dec;11(12):2419-2431. doi: 10.1038/nprot.2016.134. Epub 2016 Nov 3.


DOI:10.1038/nprot.2016.134
PMID:27809312
Abstract

The application of green-to-red photoconvertible fluorescent proteins (PCFPs) for in vivo studies in complex 3D tissue structures has remained limited because traditional near-UV photoconversion is not confined in the axial dimension, and photomodulation using axially confined, pulsed near-IR (NIR) lasers has proven inefficient. Confined primed conversion is a dual-wavelength continuous-wave (CW) illumination method that is capable of axially confined green-to-red photoconversion. Here we present a protocol to implement this technique with a commercial confocal laser-scanning microscope (CLSM); evaluate its performance on an in vitro setup; and apply primed conversion for in vivo labeling of single cells in developing zebrafish and mouse preimplantation embryos expressing the green-to-red photoconvertible protein Dendra2. The implementation requires a basic understanding of laser-scanning microscopy, and it can be performed within a single day once the required filter cube is manufactured.

摘要

将绿到红光可转化荧光蛋白(PCFPs)应用于复杂的 3D 组织结构中的活体研究一直受到限制,因为传统的近紫外光光转化不能局限在轴向维度,而使用轴向限制的、脉冲近红外(NIR)激光进行光调节已被证明效率低下。受限制的预转化是一种双波长连续波(CW)照明方法,能够进行轴向限制的绿到红光光转化。本文提供了一个使用商用共聚焦激光扫描显微镜(CLSM)实现该技术的方案;在体外设置中评估其性能;并将预转化应用于表达绿到红光可转化蛋白 Dendra2 的发育中的斑马鱼和小鼠胚胎前植入体中单细胞的活体标记。该实施需要对激光扫描显微镜有基本的了解,一旦制造出所需的滤光片,在一天内即可完成。

相似文献

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本文引用的文献

[1]
Single neuron morphology in vivo with confined primed conversion.

Methods Cell Biol. 2016

[2]
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Elife. 2016-3-22

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Mol Hum Reprod. 2016-3

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Sci Rep. 2015-6-25

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Nat Methods. 2015-5-18

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Science. 2015-2-13

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[10]
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Nat Protoc. 2012-8-9

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