Methods for measuring rates of protein binding to insoluble scaffolds in living cells: Histone H1‐chromatin interactions
- 22 June 2006
- journal article
- Published by Wiley in Journal of Cellular Biochemistry
- Vol. 99 (5), 1334-1342
- https://doi.org/10.1002/jcb.20997
Abstract
Understanding of cell regulation is limited by our inability to measure molecular binding rates for proteins within the structural context of living cells, and many systems biology models are hindered because they use values obtained with molecules binding in solution. Here, we present a kinetic analysis of GFP‐histone H1 binding to chromatin within nuclei of living cells that allows both the binding rate constant kON and dissociation rate constant kOFF to be determined based on data obtained from fluorescence recovery after photobleaching (FRAP) analysis. This is accomplished by measuring the ratio of bound to free concentration of protein at steady state, and identifying the rate‐determining step during FRAP recovery experimentally, combined with mathematical modeling. We report kOFF = 0.0131/s and kON = 0.14/s for histone H1.1 binding to chromatin. This work brings clarity to the interpretation of FRAP experiments and provides a way to determine binding kinetics for nuclear proteins and other cellular molecules that interact with insoluble scaffolds within living cells. J. Cell. Biochem. 99: 1334–1342, 2006.Keywords
This publication has 36 references indexed in Scilit:
- Molecular dynamics and nuclear receptor functionTrends in Endocrinology & Metabolism, 2005
- FRAP analysis of binding: proper and fittingTrends in Cell Biology, 2005
- Binding of histone H1 to DNA is described by an allosteric modelBiopolymers, 2004
- Nuclear structure in cancer cellsNature Reviews Cancer, 2004
- Dissection of COPI and Arf1 dynamics in vivo and role in Golgi membrane transportNature, 2002
- Kinetic modelling approaches to in vivo imagingNature Reviews Molecular Cell Biology, 2001
- Ligand-Mediated Assembly and Real-Time Cellular Dynamics of Estrogen Receptor α-Coactivator Complexes in Living CellsMolecular and Cellular Biology, 2001
- Heterochromatin Formation in Mammalian CellsMolecular Cell, 2001
- The riddle of morphogenesis: A question of solution chemistry or molecular cell engineering?Cell, 1993
- Structure of the nucleosome core particle at 7 Å resolutionNature, 1984