Cy5 NHS Ester
equivalent to Cy5® NHS ester
Cy5® NHS Ester (GE Healthcare) and Cyanine5 NHS ester are chemically equivalent, far-red fluorescent dyes used for labeling peptides, proteins and oligonucleotides, with an excitation wavelength of 651 nm and an emission wavelength of 670 nm.
Background
Cy5 is a far-red fluorescent dye belonging to the cyanine dyes family, which contains other popular fluorophores such as Cy3 (yellow) and Cy7 (near infrared). Cy5 is sometimes also sold under the names, Cyanine5 or Sulfo-Cy5; these are all the same chemical structure.The “sulfo” in the name derives from the SO3- groups present in the molecule, which improves its water solubility. Non-sulfonated Cy5, which lacks these groups, is less soluble and more likely to form aggregates in solution. Because of this, the sulfonated form of Cy3 is far more common than the non-sulfonated form.
Usage
Cy5 NHS ester has a molecular weight of 855.07 daltons. It is provided as a blue powder, with triethylammonium salts instead of potassium salts, for improved reconstitution in DMSO and DMF.The NHS ester functional group enables easy conjugation to primary amines, such as the lysine residues of antibodies and amine-modified oligonucleotides. Cy5 is also available in maleimide form, for conjugation to the sulfide groups of proteins (e.g. cysteine), as well as phosphoramidite form, for usage in oligonucleotide synthesis.
Excitation and emission
Cy5 has an excitation peak at 651 nm and an emission peak at 670 nm. It is well excited by the 633 nm or 647 nm laser lines. For detection, a fluorescence channel such as the Cy5 filter set or a 660/20 bandpass filter can be used.Applications
Cy5 can be conjugated to antibodies and used in flow cytometry. For example, Cy5-CD antibody conjugates are useful for the screening of cell surface markers and sorting by fluorescence (FACS). Cy5 can also be labeled to oligonucleotides, for use in real-time PCR techniques, such as in TaqMan probes.Alternatives
Cy7 is a near-infrared alternative to Cy5 that has an excitation and emission of 756 nm and 779 nm, respectively.iFluor 647 is a spectrally similar fluorophore that improves upon water solubility and brightness, while at a lower cost.
Example protocol
Quick summary
- Prepare protein stock solution
- Prepare dye stock solution
- Determine optimal dye/protein ratio (optional)
- Run conjugation reaction
- Purify the conjugation
Full protocol
Calculators
Common stock solution preparation
Table 1. Volume of DMSO needed to reconstitute specific mass of Cyanine 5 monosuccinimidyl ester [equivalent to Cy5® NHS ester] to given concentration. Note that volume is only for preparing stock solution. Refer to sample experimental protocol for appropriate experimental/physiological buffers.
0.1 mg | 0.5 mg | 1 mg | 5 mg | 10 mg | |
1 mM | 116.949 µL | 584.747 µL | 1.169 mL | 5.847 mL | 11.695 mL |
5 mM | 23.39 µL | 116.949 µL | 233.899 µL | 1.169 mL | 2.339 mL |
10 mM | 11.695 µL | 58.475 µL | 116.949 µL | 584.747 µL | 1.169 mL |
Molarity calculator
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Spectrum
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Alternative formats
Product family
Name | Excitation (nm) | Emission (nm) | Extinction coefficient (cm -1 M -1) | Quantum yield | Correction Factor (260 nm) | Correction Factor (280 nm) | Correction Factor (482 nm) | Correction Factor (565 nm) |
Cyanine 3 monosuccinimidyl ester [equivalent to Cy3® NHS ester] | 555 | 569 | 1500001 | 0.151 | 0.07 | 0.073 | - | - |
Cyanine 5 bissuccinimidyl ester [equivalent to Cy5® bisNHS ester] | 651 | 670 | 2500001 | 0.271, 0.42 | 0.02 | 0.03 | 0.009 | 0.09 |
Cyanine 7 monosuccinimidyl ester [equivalent to Cy7® NHS ester] | 756 | 779 | 250000 | 0.3 | 0.05 | 0.036 | 0.0005 | 0.0193 |
Citations
View all 29 citations: Citation Explorer
mInsc coordinates Par3 and NuMA condensates for assembly of the spindle orientation machinery in asymmetric cell division
Authors: Huang, Shijing and Fu, Minjie and Gu, Aihong and Zhao, Ruiqian and Liu, Ziheng and Hua, Wei and Mao, Ying and Wen, Wenyu
Journal: International Journal of Biological Macromolecules (2024): 135126
Authors: Huang, Shijing and Fu, Minjie and Gu, Aihong and Zhao, Ruiqian and Liu, Ziheng and Hua, Wei and Mao, Ying and Wen, Wenyu
Journal: International Journal of Biological Macromolecules (2024): 135126
Excessive STAU1 condensate drives mTOR translation and autophagy dysfunction in neurodegeneration
Authors: Zhao, Ruiqian and Huang, Shijing and Li, Jingyu and Gu, Aihong and Fu, Minjie and Hua, Wei and Mao, Ying and Lei, Qun-Ying and Lu, Boxun and Wen, Wenyu
Journal: Journal of Cell Biology (2024)
Authors: Zhao, Ruiqian and Huang, Shijing and Li, Jingyu and Gu, Aihong and Fu, Minjie and Hua, Wei and Mao, Ying and Lei, Qun-Ying and Lu, Boxun and Wen, Wenyu
Journal: Journal of Cell Biology (2024)
A broadly applicable protein-polymer adjuvant system for antiviral vaccines
Authors: Wang, Caiqian and Geng, Yuanyuan and Wang, Haoran and Ren, Zeheng and Hou, Qingxiu and Fang, An and Wu, Qiong and Wu, Liqin and Shi, Xiujuan and Zhou, Ming and others,
Journal: EMBO Molecular Medicine (2024): 1--33
Authors: Wang, Caiqian and Geng, Yuanyuan and Wang, Haoran and Ren, Zeheng and Hou, Qingxiu and Fang, An and Wu, Qiong and Wu, Liqin and Shi, Xiujuan and Zhou, Ming and others,
Journal: EMBO Molecular Medicine (2024): 1--33
Manganese regulation of COPII condensation controls circulating lipid homeostasis
Authors: Wang, Xiao and Huang, Runze and Wang, Yawei and Zhou, Wenjing and Hu, Yating and Yao, Yuanhang and Cheng, Kunlun and Li, Xin and Xu, Bolin and Zhang, Jie and others,
Journal: Nature Cell Biology (2023): 1--14
Authors: Wang, Xiao and Huang, Runze and Wang, Yawei and Zhou, Wenjing and Hu, Yating and Yao, Yuanhang and Cheng, Kunlun and Li, Xin and Xu, Bolin and Zhang, Jie and others,
Journal: Nature Cell Biology (2023): 1--14
Structural basis of ELKS/Rab6B interaction and its role in vesicle capturing enhanced by liquid-liquid phase separation
Authors: Jin, Gaowei and Lin, Leishu and Li, Kaiyue and Li, Jiashan and Yu, Cong and Wei, Zhiyi
Journal: Journal of Biological Chemistry (2023): 104808
Authors: Jin, Gaowei and Lin, Leishu and Li, Kaiyue and Li, Jiashan and Yu, Cong and Wei, Zhiyi
Journal: Journal of Biological Chemistry (2023): 104808
References
View all 21 references: Citation Explorer
Excitation of Cy5 in self-assembled lipid bilayers using optical microresonators
Authors: Freeman LM, Li S, Dayani Y, Choi HS, Malmstadt N, Armani AM.
Journal: Appl Phys Lett (2011): 143703
Authors: Freeman LM, Li S, Dayani Y, Choi HS, Malmstadt N, Armani AM.
Journal: Appl Phys Lett (2011): 143703
Theranostic cRGD-BioShuttle Constructs Containing Temozolomide- and Cy7 For NIR-Imaging and Therapy
Authors: Wiessler M, Hennrich U, Pipkorn R, Waldeck W, Cao L, Peter J, Ehemann V, Semmler W, Lammers T, Braun K.
Journal: Theranostics (2011): 381
Authors: Wiessler M, Hennrich U, Pipkorn R, Waldeck W, Cao L, Peter J, Ehemann V, Semmler W, Lammers T, Braun K.
Journal: Theranostics (2011): 381
Rational approach to select small peptide molecular probes labeled with fluorescent cyanine dyes for in vivo optical imaging
Authors: Berezin MY, Guo K, Akers W, Livingston J, Solomon M, Lee H, Liang K, Agee A, Achilefu S.
Journal: Biochemistry (2011): 2691
Authors: Berezin MY, Guo K, Akers W, Livingston J, Solomon M, Lee H, Liang K, Agee A, Achilefu S.
Journal: Biochemistry (2011): 2691
In vivo detection of embryonic stem cell-derived cardiovascular progenitor cells using Cy3-labeled Gadofluorine M in murine myocardium
Authors: Adler ED, Bystrup A, Briley-Saebo KC, Mani V, Young W, Giovanonne S, Altman P, Kattman SJ, Frank JA, Weinmann HJ, Keller GM, Fayad ZA.
Journal: JACC Cardiovasc Imaging (2009): 1114
Authors: Adler ED, Bystrup A, Briley-Saebo KC, Mani V, Young W, Giovanonne S, Altman P, Kattman SJ, Frank JA, Weinmann HJ, Keller GM, Fayad ZA.
Journal: JACC Cardiovasc Imaging (2009): 1114
Thiazole orange and Cy3: improvement of fluorescent DNA probes with use of short range electron transfer
Authors: Menacher F, Rubner M, Berndl S, Wagenknecht HA.
Journal: J Org Chem (2008): 4263
Authors: Menacher F, Rubner M, Berndl S, Wagenknecht HA.
Journal: J Org Chem (2008): 4263
Page updated on September 27, 2024