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当前位置: 首页 > 产品中心 > peptide > 细胞骨架/SPY555-BG底物/SPY555-BG 1小瓶-35纳摩尔/CY-SC204
商品详细细胞骨架/SPY555-BG底物/SPY555-BG 1小瓶-35纳摩尔/CY-SC204
细胞骨架/SPY555-BG底物/SPY555-BG 1小瓶-35纳摩尔/CY-SC204
细胞骨架/SPY555-BG底物/SPY555-BG 1小瓶-35纳摩尔/CY-SC204
商品编号: CY-SC204
品牌: Cytoskeleton
市场价: ¥6500.00
美元价: 3900.00
产地: 美国(厂家直采)
公司:
产品分类: 多肽合成
公司分类: peptide
联系Q Q: 3392242852
电话号码: 4000-520-616
电子邮箱: info@ebiomall.com
商品介绍
Details

SPY555-BG is the benzylguanine derivative of our SPY555 fluorophore. It emits light in the orange part of the UV-ViS spectrum, it is fluorogenic, highly cell permeable and well suited for STED and SIM superresolution imaging. SPY555-BG can be imaged with a standard Cy5 filterset. It can be used for widefield, confocal, SIM or STED imaging in living or fixed cells and tissue. It has the same structure as MaP555-SNAP the name used in its original publication in Nature Chemistry1). SPY555-BG is an alternative to SNAP-Cell® TMR-Star, it has faster labeling kinetics.

Benzylguanine (BG) is the substrate of the self labeling tag SNAP-tag™*. Upon reaction with a BG derivative, SNAP-tag™* forms a covalent bond with the substrate and releases guanine. It allows to permanently attach a fluorescent label to any protein of interest (POI) expressed as SNAP-tag™* fusion.

*SNAP-tag™ and SNAP-Cell® are registered trademarks of New England Biolabs, Inc.

Absorbance maximum λabs

555 nm

Fluorescence maximum λfl

580 nm

Works on fixed cells?

yes, PFA and methanol

Probe quantity

35 nmoles

Fluorescence lifetime

2.4 ns

STED depletion wavelength

660 or 775 nm

Shipping

room temperature

Storage

-20°C

555-DNA
Schematic: BG-SPY labeling of Tubulin-SNAP-tag* fusion protien
About

For product Datasheets and MSDSs please click on the PDF links below.

Spirochrome Technical Tips and Ex/Em spectra in graphical form (PDF)

Ex/Em spectra (raw data in Excel format)

Citations

Citations

1. “A general strategy to develop cell permeable and fluorogenic probes for multicolour nanoscopy”; Lu Wang, et. al.; Nature Chemistry 12, 165-172, 2020.

Faqs

Q1. What is STED microscopy and how does it work?

A1. STED microscopy stands for Stimulated Emission Depletion microscopy.  It is one type of super resolution microscopy which allows the capture of images with a higher resolution than conventional light microscopy which is constrained by diffraction of light.  STED uses 2 laser pulses, one is the excitation pulse which excites the fluorophore, causing it to fluoresce.  The second pulse, referred to as the STED pulse, de-excites the fluorophore via stimulated emission in an area surrounding a central focal spot that is not de-excited and thus continues to fluoresce.  This is accomplished by focusing the STED pulse into a ring shape, a so-called donut, where the center focal spot is devoid of the STED laser pulse, conferring high resolution to the fluorescent area (Fig. 1; see Ref. 1 for more details on STED microscopy).

fig1-faq

Figure 1. STED microscopic image of microtubules labeled with SiR-tubulin in human primary dermal fibroblasts.

Q2. Why is the SPY-BG and SiR-BG probe good for STED microscopy?

A2. STED microscopy offers the ability to study cellular details on a nanometermolar scale in vivo.  To take advantage of this super resolution microscopy, one must be able to select with high specificity the area to be examined using fluorescent probes.  In addition, the fluorescent probes must be bright, photostable, exhibit no or little phototoxicity, be excited and emit in the far red spectrum.  In addition, if the probe is to be used for live cell imaging (thus avoiding fixation artifacts that occur when cells are fixed), high cell permeability is necessary.  The SPY-BG and SiR-BG probes fulfill all of these requirements.  As an example, the combination of STED and SiR probes allows for unparalleled fluorescent visualization of subcellular actin and tubulin/microtubule structures and their physical characterization in living cells, (see Fig. 2 and Ref. 2). 

Neuron_actin_1
Neuron_actin_closup2_1

Figure 2. STED images of cultured rat hippocampal neurons stained with SiR-actin. Bottom image is a close-up view of part of the top image to clearly visualize actin rings (stripes) with 180 nm periodicity. Courtesy Of Elisa D"Este, MPI Biophysical Chemistry, Göttingen.

Q3: Are the SPY probes stable at room temperature?

A3: Yes, the probes are stable at room temperature for a few days.  However, it strongly depends on the probe and the solvent.  Thus, it is recommended to store all of the probes or solutions at –20°C.

 

References

1. Hell S.W. and Wichmann J. 1994. Breaking the diffraction resolution limit by stimulated emission: stimulated-emission-depletion fluorescence microscopy. Opt. Lett. 19, 780-782.

2. D’Este E. et al. 2015. STED nanoscopy reveals the ubiquity of subcortical cytoskeleton periodicity in living neurons. Cell Rep. 10, 1246-1251.

3. Lukinavicius G. et al. 2013. A near-infrared fluorophore for live-cell super-resolution microscopy of cellular proteins. Nat. Chem. 5, 132-139.

4. Lukinavicius G. et al. 2014. Fluorogenic probes for live-cell imaging of the cytoskeleton.Nature Methods. 11, 731-733.

品牌介绍
Cytoskeleton,Inc.成立于1993年。自成立以来,我们一直在不断扩大产品范围。Cytoskeleton,Inc.很高兴为药物筛选,信号转导和细胞骨架研究提供广泛的试剂盒和产品。我们专注于纯化蛋白的生产和易于使用的试剂盒,以研究生化和细胞过程。我们的试剂盒既可用于基础研究或小型筛查的少量样品,也可用于大型筛查的高通量规模除了我们现有的产品外,我们还提供产品系列中微管,微管蛋白,运动蛋白,小G蛋白效应物,GAP,GEF和其他几种蛋白的药物筛选服务。有关更多信息,请参见我们的药物筛选服务页面。如果您想从市场上购买到特定产品,请随时与我们联系。我们在这里为您提供帮助。由于我们的科学家在各自的专业领域都有多年的工作经验,因此我们能够提供高质量的产品。自1993年成立以来,我们以合理的价格生产优质的产品而闻名。