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Single-cell transcriptional uncertainty landscape of cell differentiation

Background: Single-cell studies have demonstrated the presence of significant cell-to-cell heterogeneity in gene expression. Whether such heterogeneity is only a bystander or has a functional role in the cell differentiation process is still hotly debated. Methods: In this study, we quantified and f...

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Autores principales: Gao, Nan Papili, Gandrillon, Olivier, Páldi, András, Herbach, Ulysse, Gunawan, Rudiyanto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: F1000 Research Limited 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10400935/
https://www.ncbi.nlm.nih.gov/pubmed/37545651
http://dx.doi.org/10.12688/f1000research.131861.2
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author Gao, Nan Papili
Gandrillon, Olivier
Páldi, András
Herbach, Ulysse
Gunawan, Rudiyanto
author_facet Gao, Nan Papili
Gandrillon, Olivier
Páldi, András
Herbach, Ulysse
Gunawan, Rudiyanto
author_sort Gao, Nan Papili
collection PubMed
description Background: Single-cell studies have demonstrated the presence of significant cell-to-cell heterogeneity in gene expression. Whether such heterogeneity is only a bystander or has a functional role in the cell differentiation process is still hotly debated. Methods: In this study, we quantified and followed single-cell transcriptional uncertainty – a measure of gene transcriptional stochasticity in single cells – in 10 cell differentiation systems of varying cell lineage progressions, from single to multi-branching trajectories, using the stochastic two-state gene transcription model. Results: By visualizing the transcriptional uncertainty as a landscape over a two-dimensional representation of the single-cell gene expression data, we observed universal features in the cell differentiation trajectories that include: (i) a peak in single-cell uncertainty during transition states, and in systems with bifurcating differentiation trajectories, each branching point represents a state of high transcriptional uncertainty; (ii) a positive correlation of transcriptional uncertainty with transcriptional burst size and frequency; (iii) an increase in RNA velocity preceding the increase in the cell transcriptional uncertainty. Conclusions: Our findings suggest a possible universal mechanism during the cell differentiation process, in which stem cells engage stochastic exploratory dynamics of gene expression at the start of the cell differentiation by increasing gene transcriptional bursts, and disengage such dynamics once cells have decided on a particular terminal cell identity. Notably, the peak of single-cell transcriptional uncertainty signifies the decision-making point in the cell differentiation process.
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spelling pubmed-104009352023-08-05 Single-cell transcriptional uncertainty landscape of cell differentiation Gao, Nan Papili Gandrillon, Olivier Páldi, András Herbach, Ulysse Gunawan, Rudiyanto F1000Res Research Article Background: Single-cell studies have demonstrated the presence of significant cell-to-cell heterogeneity in gene expression. Whether such heterogeneity is only a bystander or has a functional role in the cell differentiation process is still hotly debated. Methods: In this study, we quantified and followed single-cell transcriptional uncertainty – a measure of gene transcriptional stochasticity in single cells – in 10 cell differentiation systems of varying cell lineage progressions, from single to multi-branching trajectories, using the stochastic two-state gene transcription model. Results: By visualizing the transcriptional uncertainty as a landscape over a two-dimensional representation of the single-cell gene expression data, we observed universal features in the cell differentiation trajectories that include: (i) a peak in single-cell uncertainty during transition states, and in systems with bifurcating differentiation trajectories, each branching point represents a state of high transcriptional uncertainty; (ii) a positive correlation of transcriptional uncertainty with transcriptional burst size and frequency; (iii) an increase in RNA velocity preceding the increase in the cell transcriptional uncertainty. Conclusions: Our findings suggest a possible universal mechanism during the cell differentiation process, in which stem cells engage stochastic exploratory dynamics of gene expression at the start of the cell differentiation by increasing gene transcriptional bursts, and disengage such dynamics once cells have decided on a particular terminal cell identity. Notably, the peak of single-cell transcriptional uncertainty signifies the decision-making point in the cell differentiation process. F1000 Research Limited 2023-07-20 /pmc/articles/PMC10400935/ /pubmed/37545651 http://dx.doi.org/10.12688/f1000research.131861.2 Text en Copyright: © 2023 Gao NP et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Gao, Nan Papili
Gandrillon, Olivier
Páldi, András
Herbach, Ulysse
Gunawan, Rudiyanto
Single-cell transcriptional uncertainty landscape of cell differentiation
title Single-cell transcriptional uncertainty landscape of cell differentiation
title_full Single-cell transcriptional uncertainty landscape of cell differentiation
title_fullStr Single-cell transcriptional uncertainty landscape of cell differentiation
title_full_unstemmed Single-cell transcriptional uncertainty landscape of cell differentiation
title_short Single-cell transcriptional uncertainty landscape of cell differentiation
title_sort single-cell transcriptional uncertainty landscape of cell differentiation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10400935/
https://www.ncbi.nlm.nih.gov/pubmed/37545651
http://dx.doi.org/10.12688/f1000research.131861.2
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