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Self-labelling enzymes as universal tags for fluorescence microscopy, super-resolution microscopy and electron microscopy

机译:自标记酶作为荧光显微镜,超分辨率显微镜和电子显微镜的通用标签

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Research in cell biology demands advanced microscopy techniques such as confocal fluorescence microscopy (FM), super-resolution microscopy (SRM) and transmission electron microscopy (TEM). Correlative light and electron microscopy (CLEM) is an approach to combine data on the dynamics of proteins or protein complexes in living cells with the ultrastructural details in the low nanometre scale. To correlate both data sets, markers functional in FM, SRM and TEM are required. Genetically encoded markers such as fluorescent proteins or self-labelling enzyme tags allow observations in living cells. Various genetically encoded tags are available for FM and SRM, but only few tags are suitable for CLEM. Here, we describe the red fluorescent dye tetramethylrhodamine (TMR) as a multimodal marker for CLEM. TMR is used as fluorochrome coupled to ligands of genetically encoded self-labelling enzyme tags HaloTag, SNAP-tag and CLIP-tag in FM and SRM. We demonstrate that TMR can additionally photooxidize diaminobenzidine (DAB) to an osmiophilic polymer visible on TEM sections, thus being a marker suitable for FM, SRM and TEM. We evaluated various organelle markers with enzymatic tags in mammalian cells labelled with TMR-coupled ligands and demonstrate the use as efficient and versatile DAB photooxidizer for CLEM approaches.
机译:细胞生物学研究需要先进的显微镜技术,例如共聚焦荧光显微镜(FM),超分辨率显微镜(SRM)和透射电子显微镜(TEM)。相关的光电子显微镜(CLEM)是一种将活细胞中蛋白质或蛋白质复合物动力学数据与低纳米级超微结构细节相结合的方法。为了关联两个数据集,需要在FM,SRM和TEM中起作用的标记。遗传编码的标记(例如荧光蛋白或自标记酶标记)允许在活细胞中观察。 FM和SRM可以使用各种遗传编码的标签,但是只有少量标签适用于CLEM。在这里,我们描述红色荧光染料四甲基罗丹明(TMR)作为CLEM的多峰标记。 TMR用作与FM和SRM中遗传编码的自标记酶标签HaloTag,SNAP标签和CLIP标签的配体偶联的荧光染料。我们证明,TMR还可将二氨基联苯胺(DAB)光氧化为在TEM截面上可见的亲油性聚合物,因此是适合FM,SRM和TEM的标记。我们在用TMR偶联的配体标记的哺乳动物细胞中评估了带有酶标记的各种细胞器标记,并证明了其作为CLEM方法的高效通用DAB光氧化剂的用途。

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