| Literature DB >> 20161796 |
Yusuke Niino1, Kohji Hotta, Kotaro Oka.
Abstract
Cyclic GMP (cGMP) regulates many physiological processes by cooperating with the other signaling molecules such as cyclic AMP (cAMP) and Ca(2+). Genetically encoded sensors for cGMP have been developed based on fluorescence resonance energy transfer (FRET) between fluorescent proteins. However, to analyze the dynamic relationship among these second messengers, combined use of existing sensors in a single cell is inadequate because of the significant spectral overlaps. A single wavelength indicator is an effective alternative to avoid this problem, but color variants of a single fluorescent protein-based biosensor are limited. In this study, to construct a new color fluorescent sensor, we converted the FRET-based sensor into a single wavelength indicator using a dark FRET acceptor. We developed a blue fluorescent cGMP biosensor, which is spectrally compatible with a FRET-based cAMP sensor using cyan and yellow fluorescent proteins (CFP/YFP). We cotransfected them and loaded a red fluorescent probe for Ca(2+) into cells, and accomplished triple-parameter fluorescence imaging of these cyclic nucleotides and Ca(2+), confirming the applicability of this combination to individually monitor their dynamics in a single cell. This blue fluorescent sensor and the approach using this FRET pair would be useful for multiparameter fluorescence imaging to understand complex signal transduction networks.Entities:
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Year: 2010 PMID: 20161796 PMCID: PMC2820094 DOI: 10.1371/journal.pone.0009164
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Blue fluorescent cGMP sensor Cygnus.
(A) Domain structures of cGES-DE5 and Cygnus. (B) In vitro emission spectra of Cygnus at zero (black) and high cGMP (2 mM, red). (C) Concentration response curves of Cygnus for cGMP and cAMP. Half-maximal effective concentration (EC50) values for cGMP and cAMP were 1.0±0.2 µM and 0.4±0.3 mM (means ± s.e.m., n = 4), respectively. (D) Comparative measurements of cGMP dynamics in PC12 cells expressing cGES-DE5 and Cygnus. Representative fluorescence images (upper) and traces (lower) are shown. The cells were stimulated with 50 µM SNAP (n = 7). (E) Quantitative analysis of the maximal response amplitude in (D). Black and white bars indicate the decrease and the increase of the signals, respectively. (F) cGMP imaging in primary rat hippocampal neurons using Cygnus. A representative fluorescence image (upper) and a trace of the response to 50 µM SNAP (lower) are shown (n = 6). Scale bar, 10 µm.
Figure 2Triple-parameter fluorescence imaging of cAMP, cGMP and Ca2+ in PC12 cells.
The cells coexpressing Epac1-camps and Cygnus and loaded with Fura Red were first stimulated with 5 µM adenosine and 100 µM IBMX, then with 10 µM SNAP and subsequently with 5 µM ionomycin (n = 6). Representative traces (A) and pseudocolored images before and at four minutes after the indicated stimulations (B). Fura Red was also loaded into the cells around the cell of interest. Scale bar, 10 µm.