Jump to main content
Jump to site search
PLANNED MAINTENANCE Close the message box

Scheduled maintenance upgrade on Thursday 4th of May 2017 from 8.00am to 9.00am (BST).

During this time our websites will be offline temporarily. If you have any questions please use the feedback button on this page. We apologise for any inconvenience this might cause and thank you for your patience.


Issue 3, 2011
Previous Article Next Article

Studying Smad2 intranuclear diffusion dynamics by mathematical modelling of FRAP experiments

Author affiliations

Abstract

We combine Fluorescence Recovery After Photobleaching (FRAP) experiments with mathematical modelling to study the dynamics inside the nucleus of both the TGF-β-sensitive transcriptional regulator Smad2, and Green-Fluorescent Protein (GFP). We show how combining modelling with bleaching strips of different areas allows a rigorous test of whether or not a protein is moving via diffusion as a single species. As noted recently by others, it is important to consider diffusion during the bleaching process. Neglecting it can cause serious error. Also, it is possible to use the bleaching process itself to provide an extra consistency test to the models predicting the recovery. With our method we show that the dynamics of GFP are consistent with it diffusing as a single species in a uniform environment in which flow is negligible. In contrast, the dynamics of the intracellular signal transducer Smad2 are never consistent with it moving as a single species via simple diffusion in a homogeneous environment without flow. Adding TGF-β slows down the dynamics of Smad2 but even without TGF-β, the Smad2 dynamics are influenced by one or more of: association, flow, and inhomogeneity in space of the dynamics. We suggest that the dynamics inside cells of many proteins may be poorly described by simple diffusion of a single species, and that our methodology provides a general and powerful way to test this hypothesis.

Graphical abstract: Studying Smad2 intranuclear diffusion dynamics by mathematical modelling of FRAP experiments

Back to tab navigation
Please wait while Download options loads

Publication details

The article was received on 08 Sep 2010, accepted on 14 Dec 2010 and first published on 14 Jan 2011


Article type: Paper
DOI: 10.1039/C0IB00098A
Citation: Integr. Biol., 2011,3, 197-207
  •   Request permissions

    Studying Smad2 intranuclear diffusion dynamics by mathematical modelling of FRAP experiments

    V. González-Pérez, B. Schmierer, C. S. Hill and R. P. Sear, Integr. Biol., 2011, 3, 197
    DOI: 10.1039/C0IB00098A

Search articles by author