FB2026_01 , released March 12, 2026
FB2026_01 , released March 12, 2026
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Citation
McCarthy, G.D., Drewell, R.A., Dresch, J.M. (2015). Global sensitivity analysis of a dynamic model for gene expression in Drosophila embryos.  PeerJ 3(): e1022.
FlyBase ID
FBrf0229055
Publication Type
Research paper
Abstract
It is well known that gene regulation is a tightly controlled process in early organismal development. However, the roles of key processes involved in this regulation, such as transcription and translation, are less well understood, and mathematical modeling approaches in this field are still in their infancy. In recent studies, biologists have taken precise measurements of protein and mRNA abundance to determine the relative contributions of key factors involved in regulating protein levels in mammalian cells. We now approach this question from a mathematical modeling perspective. In this study, we use a simple dynamic mathematical model that incorporates terms representing transcription, translation, mRNA and protein decay, and diffusion in an early Drosophila embryo. We perform global sensitivity analyses on this model using various different initial conditions and spatial and temporal outputs. Our results indicate that transcription and translation are often the key parameters to determine protein abundance. This observation is in close agreement with the experimental results from mammalian cells for various initial conditions at particular time points, suggesting that a simple dynamic model can capture the qualitative behavior of a gene. Additionally, we find that parameter sensitivites are temporally dynamic, illustrating the importance of conducting a thorough global sensitivity analysis across multiple time points when analyzing mathematical models of gene regulation.
PubMed ID
PubMed Central ID
PMC4476099 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    PeerJ
    Title
    PeerJ
    ISBN/ISSN
    2167-8359
    Data From Reference
    Genes (3)