| Literature DB >> 23552272 |
Evelien Mylle1,2, Mirela-Corina Codreanu1,2, Joanna Boruc1,2, Eugenia Russinova1,2.
Abstract
BACKGROUND: Fluorescence imaging at high spectral resolution allows the simultaneous recording of multiple fluorophores without switching optical filters, which is especially useful for time-lapse analysis of living cells. The collected emission spectra can be used to distinguish fluorophores by a computation analysis called linear unmixing. The availability of accurate reference spectra for different fluorophores is crucial for this type of analysis. The reference spectra used by plant cell biologists are in most cases derived from the analysis of fluorescent proteins in solution or produced in animal cells, although these spectra are influenced by both the cellular environment and the components of the optical system. For instance, plant cells contain various autofluorescent compounds, such as cell wall polymers and chlorophyll, that affect the spectral detection of some fluorophores. Therefore, it is important to acquire both reference and experimental spectra under the same biological conditions and through the same imaging systems.Entities:
Year: 2013 PMID: 23552272 PMCID: PMC3630006 DOI: 10.1186/1746-4811-9-10
Source DB: PubMed Journal: Plant Methods ISSN: 1746-4811 Impact factor: 4.993
Multi-color Gateway-compatible entry clones
| Dendra | pDONR P4-P1R | pEN-L4-Dendra-R1 | attB4-attB1 |
| pDONR221 | pEN-L1-Dendra-L2 | attB1-attB2 | |
| pDONR221 | pEN-L1-Dendra*-L2 | attB1-attB2 | |
| pDONR P2R-P3 | pEN-R2-Dendra*-L3 | attB2-attB3 | |
| Venus | pDONR P4-P1R | pEN-L4-Venus-R1 | attB1-attB2 |
| pDONR221 | pEN-L1- Venus -L2 | attB1-attB2 | |
| pDONR221 | pEN-L1- Venus *-L2 | attB1-attB2 | |
| pDONR P2R-P3 | pEN-R2- Venus *-L3 | attB2-attB3 | |
| mCherry | pDONR P4-P1R | pEN-L4-mCherry-R1 | attB4-attB1 |
| pDONR221 | pEN-L1- mCherry -L2 | attB1-attB2 | |
| pDONR221 | pEN-L1- mCherry *-L2 | attB1-attB2 | |
| pDONR P2R-P3 | pEN-R2- mCherry *-L3 | attB2-attB3 | |
| TagRFP | pDONR P4-P1R | pEN-L4-TagRFP-R1 | attB4-attB1 |
| pDONR221 | pEN-L1- TagRFP -L2 | attB1-attB2 | |
| pDONR221 | pEN-L1- TagRFP *-L2 | attB1-attB2 | |
| pDONR P2R-P3 | pEN-R2- TagRFP *-L3 | attB2-attB3 | |
| Cerulean | pDONR P4-P1R | pEN-L4-Cerulean-R1 | attB4-attB1 |
| pDONR221 | pEN-L1- Cerulean -L2 | attB1-attB2 | |
| pDONR221 | pEN-L1- Cerulean *-L2 | attB1-attB2 | |
| pDONR P2R-P3 | pEN-R2- Cerulean *-L3 | attB2-attB3 |
* indicates STOP codons.
Characterization of different FP variants
| eGFP | 488 | 488 | 509.5 | 506 | 1.21 | 20 | [ |
| eYFP | 514 | 488 | 527 | 522 | 1 | 4 | [ |
| Venus | 515 | 488 | 528 | 524 | 1.04 | 14 | [ |
| eCFP | 434 | 405 | 475; 501 | 474; 500 | 1.82; 3.03 | 16 | [ |
| Cerulean | 433 | 405 | 475; 501 | 474; 496 | 0.57; 2.67 | 12 | [ |
| mCherry | 587 | 559 | 610 | 598 | 1.26 | 16 | [ |
| mRFP | 584 | 559 and 561** | 608 | 598 and 596* and 607** | 1.17 and 2.19* and 1.13** | 33 and 22* and 13** | [ |
| TagRFP | 555 | 515 | 583 | 572 | 1.56 | 9 | [ |
* indicates experiments performed with free mRFP.
** indicates experiments performed with Zeiss LSM 710.
Figure 1Fluorescence emission spectra of different FPs in tobacco epidermal cells. Eight FPs were transiently expressed in tobacco epidermal cells, and the measured fluorescence emission spectra data (green lines) were compared with the publicly available ones (red lines).
Figure 2The fluorescent emission spectra are not affected by the protein fusion. mRFP fused to CDKA;1 (A) and free mRFP (B) were transiently expressed in tobacco and the fluorescence emission spectra were measured in the nucleus (marked by a ring) with Olympus FluoView™ FV1000 and Zeiss LSM 710 (C). Scale bars, 30 μm.
Figure 3Linear unmixing of spectrally similar fluorophores in tobacco and cells. (A-D) Tobacco epidermal cells transiently expressing CDKA;1-TagRFP and ER-mCherry marker. (A) Image before unmixing (red channel, 609-619 nm). Fluorophore signals after unmixing: ER-mCherry in the ER strands and nuclear envelope (B) and CDKA;1-TagRFP in the nucleus and the cytoplasm (C). (D) Overlay. (E-H) Arabidopsis roots expressing PIN2-eGFP and AUX1-eYFP. Image before unmixing (green channel, 524-534 nm) (E) and fluorophore signals after unmixing: PIN2-eGFP (G), AUX1-eYFP (F) and overlay (H). Scale bars, 30 μm.