We introduce an analytical model which shows quantitatively that gene colocalization significantly accelerates the association of transcriptions factors (TFs) with their target site on DNA. This model takes into account the influence of conformational fluctuations of TFs on reactivity, and shows that the benefit due to colocalization, highlighted by Kolesov et al. (Proc. Natl. Acad. Sci. U.S.A., 104 (2007) 13948), can be further optimized by tuning the diffusion coefficient of TFs. This diffusion optimized colocalization mechanism is robust and compatible with available experimental data, and could help understanding the observed gene transcription efficiency
Site-specific transcription factors (TFs) bind to their target sites on the DNA, where they regulate...
AbstractNumerous biological processes are regulated by DNA elements that communicate with their targ...
Transcriptional regulation is mediated by a battery of transcription factor (TF) proteins, that form...
How gene colocalization can be optimized by tuning the diffusion constant of transcription factor
<div><p>We present a computational model of transcription factor motion that explains both the obser...
Co-localization of networks of genes in the nucleus is thought to play an important role in determin...
Co-localization of networks of genes in the nucleus is thought to play an important role in determin...
AbstractMuch of the complexity observed in gene regulation originates from cooperative protein-DNA b...
Co-localization of networks of genes in the nucleus is thought to play an important role in determin...
Transcription factors (TFs) are able to associate to their binding sites on DNA faster than the phys...
Transcription factor (TF) molecules translocate by facilitated diffusion (a combination of 3D diffus...
There is now a certain consensus that transcription factors (TFs) reach their target sites, where th...
Transcription factor (TF) molecules translocate by facilitated diffusion (a combination of 3D diffus...
International audienceThe stochastic nature of gene expression has been widely demonstrated over the...
Background: Site-specific Transcription Factors (TFs) are proteins that bind to specific sites on th...
Site-specific transcription factors (TFs) bind to their target sites on the DNA, where they regulate...
AbstractNumerous biological processes are regulated by DNA elements that communicate with their targ...
Transcriptional regulation is mediated by a battery of transcription factor (TF) proteins, that form...
How gene colocalization can be optimized by tuning the diffusion constant of transcription factor
<div><p>We present a computational model of transcription factor motion that explains both the obser...
Co-localization of networks of genes in the nucleus is thought to play an important role in determin...
Co-localization of networks of genes in the nucleus is thought to play an important role in determin...
AbstractMuch of the complexity observed in gene regulation originates from cooperative protein-DNA b...
Co-localization of networks of genes in the nucleus is thought to play an important role in determin...
Transcription factors (TFs) are able to associate to their binding sites on DNA faster than the phys...
Transcription factor (TF) molecules translocate by facilitated diffusion (a combination of 3D diffus...
There is now a certain consensus that transcription factors (TFs) reach their target sites, where th...
Transcription factor (TF) molecules translocate by facilitated diffusion (a combination of 3D diffus...
International audienceThe stochastic nature of gene expression has been widely demonstrated over the...
Background: Site-specific Transcription Factors (TFs) are proteins that bind to specific sites on th...
Site-specific transcription factors (TFs) bind to their target sites on the DNA, where they regulate...
AbstractNumerous biological processes are regulated by DNA elements that communicate with their targ...
Transcriptional regulation is mediated by a battery of transcription factor (TF) proteins, that form...