Qr:    author:"Alexei Grichine"
        
        
            
                
                    Showing 1 - 2 of 2 results
                    
                
                
             
        
        
            
                
                    
                        1.
                        Shaping an evanescent focus of light for high spatial resolution optogenetic activations in live cells.
                        
                        
                        
                        
                            Abstract:
                            Confining light illumination in the three dimensions of space is a challenge for various applications. Among these, optogenetic methods developed for live experiments in cell biology would benefit from such a localized illumination as it would improve the spatial resolution of diffusive photosensitive proteins leading to spatially constrained biological responses in specific subcellular organelles. Here, we describe a method to create and move a focused evanescent spot, at the interface between a glass substrate and an aqueous sample, across the field of view of a high numerical aperture microscope objective, using a digital micro-mirror device (DMD). We show that, after correcting the optical aberrations, light is confined within a spot of sub-micron lateral size and ∼100 nm axial depth above the coverslip, resulting in a volume of illumination drastically smaller than the one generated by a standard propagative focus. This evanescent focus is sufficient to induce a more intense and localized recruitment compared to a propagative focus on the optogenetic system CRY2-CIBN, improving the resolution of its pattern of activation.
                        
                        
                    
                
            
                
                    
                        2.
                        Control of SRC molecular dynamics encodes distinct cytoskeletal responses by specifying signaling pathway usage.
                        
                        
                            
                                
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                                            Kerjouan, A
                                        
                                    
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                                            Boyault, C
                                        
                                    
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                                            Oddou, C
                                        
                                    
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                                            Hiriart-Bryant, E
                                        
                                    
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                                            Grichine, A
                                        
                                    
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                                            Kraut, A
                                        
                                    
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                                            Pezet, M
                                        
                                    
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                                            Balland, M
                                        
                                    
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                                            Faurobert, E
                                        
                                    
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                                            Bonnet, I
                                        
                                    
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                                            Coute, Y
                                        
                                    
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                                            Fourcade, B
                                        
                                    
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                                            Albiges-Rizo, C
                                        
                                    
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                                            Destaing, O
                                        
                                    
 
                        
                        
                            Abstract:
                            Upon activation by different transmembrane receptors, the same signaling protein can induce distinct cellular responses. A way to decipher the mechanisms of such pleiotropic signaling activity is to directly manipulate the decision-making activity that supports the selection between distinct cellular responses. We developed an optogenetic probe (optoSRC) to control SRC signaling, an example of a pleiotropic signaling node, and we demonstrated its ability to generate different acto-adhesive structures (lamellipodia or invadosomes) upon distinct spatio-temporal control of SRC kinase activity. The occurrence of each acto-adhesive structure was simply dictated by the dynamics of optoSRC nanoclusters in adhesive sites, which were dependent on the SH3 and Unique domains of the protein. The different decision-making events regulated by optoSRC dynamics induced distinct downstream signaling pathways, which we characterized using time-resolved proteomic and network analyses. Collectively, by manipulating the molecular mobility of SRC kinase activity, these experiments reveal the pleiotropy-encoding mechanism of SRC signaling.