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Maturation models of fluorescent proteins are necessary for unbiased estimates of promoter activity.


ABSTRACT: Fluorescent proteins (FPs) are a powerful tool to quantitatively monitor gene expression. The dynamics of a promoter and its regulation can be inferred from fluorescence data. The interpretation of fluorescent data, however, is strongly dependent on the maturation of FPs since different proteins mature in distinct ways. We propose a novel approach for analyzing fluorescent reporter data by incorporating maturation dynamics in the reconstruction of promoter activities. Our approach consists of developing and calibrating mechanistic maturation models for distinct FPs. These models are then used alongside a Bayesian approach to estimate promoter activities from fluorescence data. We demonstrate by means of targeted experiments in Escherichia coli that our approach provides robust estimates and that accounting for maturation is, in many cases, essential for the interpretation of gene expression data.

SUBMITTER: Pavlou A 

PROVIDER: S-EPMC9675035 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Maturation models of fluorescent proteins are necessary for unbiased estimates of promoter activity.

Pavlou Antrea A   Cinquemani Eugenio E   Geiselmann Johannes J   de Jong Hidde H  

Biophysical journal 20220921 21


Fluorescent proteins (FPs) are a powerful tool to quantitatively monitor gene expression. The dynamics of a promoter and its regulation can be inferred from fluorescence data. The interpretation of fluorescent data, however, is strongly dependent on the maturation of FPs since different proteins mature in distinct ways. We propose a novel approach for analyzing fluorescent reporter data by incorporating maturation dynamics in the reconstruction of promoter activities. Our approach consists of de  ...[more]

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