Cargando…

Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq

Direct lineage reprogramming represents a remarkable conversion of cellular and transcriptome states(1–3). However, the intermediates through which individual cells progress are largely undefined. Here we used single-cell RNA-seq(4–7) at multiple time points to dissect direct reprogramming from mous...

Descripción completa

Detalles Bibliográficos
Autores principales: Treutlein, Barbara, Lee, Qian Yi, Camp, J. Gray, Mall, Moritz, Koh, Winston, Shariati, Seyed Ali Mohammad, Sim, Sopheak, Neff, Norma F., Skotheim, Jan M., Wernig, Marius, Quake, Stephen R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4928860/
https://www.ncbi.nlm.nih.gov/pubmed/27281220
http://dx.doi.org/10.1038/nature18323
_version_ 1782440509010083840
author Treutlein, Barbara
Lee, Qian Yi
Camp, J. Gray
Mall, Moritz
Koh, Winston
Shariati, Seyed Ali Mohammad
Sim, Sopheak
Neff, Norma F.
Skotheim, Jan M.
Wernig, Marius
Quake, Stephen R.
author_facet Treutlein, Barbara
Lee, Qian Yi
Camp, J. Gray
Mall, Moritz
Koh, Winston
Shariati, Seyed Ali Mohammad
Sim, Sopheak
Neff, Norma F.
Skotheim, Jan M.
Wernig, Marius
Quake, Stephen R.
author_sort Treutlein, Barbara
collection PubMed
description Direct lineage reprogramming represents a remarkable conversion of cellular and transcriptome states(1–3). However, the intermediates through which individual cells progress are largely undefined. Here we used single-cell RNA-seq(4–7) at multiple time points to dissect direct reprogramming from mouse embryonic fibroblasts (MEFs) to induced neuronal (iN) cells. By deconstructing heterogeneity at each time point and ordering cells by transcriptome similarity, we find that the molecular reprogramming path is remarkably continuous. Overexpression of the proneural pioneer factor Ascl1 results in a well-defined initialization, causing cells to exit the cell cycle and re-focus gene expression through distinct neural transcription factors. The initial transcriptional response is relatively homogeneous among fibroblasts suggesting the early steps are not limiting for productive reprogramming. Instead, the later emergence of a competing myogenic program and variable transgene dynamics over time appear to be the major efficiency limits of direct reprogramming. Moreover, a transcriptional state, distinct from donor and target cell programs, is transiently induced in cells undergoing productive reprogramming. Our data provide a high-resolution approach for understanding transcriptome states during lineage differentiation.
format Online
Article
Text
id pubmed-4928860
institution National Center for Biotechnology Information
language English
publishDate 2016
record_format MEDLINE/PubMed
spelling pubmed-49288602016-12-08 Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq Treutlein, Barbara Lee, Qian Yi Camp, J. Gray Mall, Moritz Koh, Winston Shariati, Seyed Ali Mohammad Sim, Sopheak Neff, Norma F. Skotheim, Jan M. Wernig, Marius Quake, Stephen R. Nature Article Direct lineage reprogramming represents a remarkable conversion of cellular and transcriptome states(1–3). However, the intermediates through which individual cells progress are largely undefined. Here we used single-cell RNA-seq(4–7) at multiple time points to dissect direct reprogramming from mouse embryonic fibroblasts (MEFs) to induced neuronal (iN) cells. By deconstructing heterogeneity at each time point and ordering cells by transcriptome similarity, we find that the molecular reprogramming path is remarkably continuous. Overexpression of the proneural pioneer factor Ascl1 results in a well-defined initialization, causing cells to exit the cell cycle and re-focus gene expression through distinct neural transcription factors. The initial transcriptional response is relatively homogeneous among fibroblasts suggesting the early steps are not limiting for productive reprogramming. Instead, the later emergence of a competing myogenic program and variable transgene dynamics over time appear to be the major efficiency limits of direct reprogramming. Moreover, a transcriptional state, distinct from donor and target cell programs, is transiently induced in cells undergoing productive reprogramming. Our data provide a high-resolution approach for understanding transcriptome states during lineage differentiation. 2016-06-08 /pmc/articles/PMC4928860/ /pubmed/27281220 http://dx.doi.org/10.1038/nature18323 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Treutlein, Barbara
Lee, Qian Yi
Camp, J. Gray
Mall, Moritz
Koh, Winston
Shariati, Seyed Ali Mohammad
Sim, Sopheak
Neff, Norma F.
Skotheim, Jan M.
Wernig, Marius
Quake, Stephen R.
Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq
title Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq
title_full Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq
title_fullStr Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq
title_full_unstemmed Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq
title_short Dissecting direct reprogramming from fibroblast to neuron using single-cell RNA-seq
title_sort dissecting direct reprogramming from fibroblast to neuron using single-cell rna-seq
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4928860/
https://www.ncbi.nlm.nih.gov/pubmed/27281220
http://dx.doi.org/10.1038/nature18323
work_keys_str_mv AT treutleinbarbara dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT leeqianyi dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT campjgray dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT mallmoritz dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT kohwinston dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT shariatiseyedalimohammad dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT simsopheak dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT neffnormaf dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT skotheimjanm dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT wernigmarius dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq
AT quakestephenr dissectingdirectreprogrammingfromfibroblasttoneuronusingsinglecellrnaseq