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Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses

We present barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel insitu analyses (BOLORAMIS), a reverse transcription-free method for spatially-resolved, targeted, in situ RNA identification of single or multiple targets. BOLORAMIS was demonstrated on a range of cell types...

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Autores principales: Liu, Songlei, Punthambaker, Sukanya, Iyer, Eswar P R, Ferrante, Thomas, Goodwin, Daniel, Fürth, Daniel, Pawlowski, Andrew C, Jindal, Kunal, Tam, Jenny M, Mifflin, Lauren, Alon, Shahar, Sinha, Anubhav, Wassie, Asmamaw T, Chen, Fei, Cheng, Anne, Willocq, Valerie, Meyer, Katharina, Ling, King-Hwa, Camplisson, Conor K, Kohman, Richie E, Aach, John, Lee, Je Hyuk, Yankner, Bruce A, Boyden, Edward S, Church, George M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8191787/
https://www.ncbi.nlm.nih.gov/pubmed/33693773
http://dx.doi.org/10.1093/nar/gkab120
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author Liu, Songlei
Punthambaker, Sukanya
Iyer, Eswar P R
Ferrante, Thomas
Goodwin, Daniel
Fürth, Daniel
Pawlowski, Andrew C
Jindal, Kunal
Tam, Jenny M
Mifflin, Lauren
Alon, Shahar
Sinha, Anubhav
Wassie, Asmamaw T
Chen, Fei
Cheng, Anne
Willocq, Valerie
Meyer, Katharina
Ling, King-Hwa
Camplisson, Conor K
Kohman, Richie E
Aach, John
Lee, Je Hyuk
Yankner, Bruce A
Boyden, Edward S
Church, George M
author_facet Liu, Songlei
Punthambaker, Sukanya
Iyer, Eswar P R
Ferrante, Thomas
Goodwin, Daniel
Fürth, Daniel
Pawlowski, Andrew C
Jindal, Kunal
Tam, Jenny M
Mifflin, Lauren
Alon, Shahar
Sinha, Anubhav
Wassie, Asmamaw T
Chen, Fei
Cheng, Anne
Willocq, Valerie
Meyer, Katharina
Ling, King-Hwa
Camplisson, Conor K
Kohman, Richie E
Aach, John
Lee, Je Hyuk
Yankner, Bruce A
Boyden, Edward S
Church, George M
author_sort Liu, Songlei
collection PubMed
description We present barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel insitu analyses (BOLORAMIS), a reverse transcription-free method for spatially-resolved, targeted, in situ RNA identification of single or multiple targets. BOLORAMIS was demonstrated on a range of cell types and human cerebral organoids. Singleplex experiments to detect coding and non-coding RNAs in human iPSCs showed a stem-cell signature pattern. Specificity of BOLORAMIS was found to be 92% as illustrated by a clear distinction between human and mouse housekeeping genes in a co-culture system, as well as by recapitulation of subcellular localization of lncRNA MALAT1. Sensitivity of BOLORAMIS was quantified by comparing with single molecule FISH experiments and found to be 11%, 12% and 35% for GAPDH, TFRC and POLR2A, respectively. To demonstrate BOLORAMIS for multiplexed gene analysis, we targeted 96 mRNAs within a co-culture of iNGN neurons and HMC3 human microglial cells. We used fluorescence in situ sequencing to detect error-robust 8-base barcodes associated with each of these genes. We then used this data to uncover the spatial relationship among cells and transcripts by performing single-cell clustering and gene–gene proximity analyses. We anticipate the BOLORAMIS technology for in situ RNA detection to find applications in basic and translational research.
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spelling pubmed-81917872021-06-11 Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses Liu, Songlei Punthambaker, Sukanya Iyer, Eswar P R Ferrante, Thomas Goodwin, Daniel Fürth, Daniel Pawlowski, Andrew C Jindal, Kunal Tam, Jenny M Mifflin, Lauren Alon, Shahar Sinha, Anubhav Wassie, Asmamaw T Chen, Fei Cheng, Anne Willocq, Valerie Meyer, Katharina Ling, King-Hwa Camplisson, Conor K Kohman, Richie E Aach, John Lee, Je Hyuk Yankner, Bruce A Boyden, Edward S Church, George M Nucleic Acids Res Methods Online We present barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel insitu analyses (BOLORAMIS), a reverse transcription-free method for spatially-resolved, targeted, in situ RNA identification of single or multiple targets. BOLORAMIS was demonstrated on a range of cell types and human cerebral organoids. Singleplex experiments to detect coding and non-coding RNAs in human iPSCs showed a stem-cell signature pattern. Specificity of BOLORAMIS was found to be 92% as illustrated by a clear distinction between human and mouse housekeeping genes in a co-culture system, as well as by recapitulation of subcellular localization of lncRNA MALAT1. Sensitivity of BOLORAMIS was quantified by comparing with single molecule FISH experiments and found to be 11%, 12% and 35% for GAPDH, TFRC and POLR2A, respectively. To demonstrate BOLORAMIS for multiplexed gene analysis, we targeted 96 mRNAs within a co-culture of iNGN neurons and HMC3 human microglial cells. We used fluorescence in situ sequencing to detect error-robust 8-base barcodes associated with each of these genes. We then used this data to uncover the spatial relationship among cells and transcripts by performing single-cell clustering and gene–gene proximity analyses. We anticipate the BOLORAMIS technology for in situ RNA detection to find applications in basic and translational research. Oxford University Press 2021-03-08 /pmc/articles/PMC8191787/ /pubmed/33693773 http://dx.doi.org/10.1093/nar/gkab120 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methods Online
Liu, Songlei
Punthambaker, Sukanya
Iyer, Eswar P R
Ferrante, Thomas
Goodwin, Daniel
Fürth, Daniel
Pawlowski, Andrew C
Jindal, Kunal
Tam, Jenny M
Mifflin, Lauren
Alon, Shahar
Sinha, Anubhav
Wassie, Asmamaw T
Chen, Fei
Cheng, Anne
Willocq, Valerie
Meyer, Katharina
Ling, King-Hwa
Camplisson, Conor K
Kohman, Richie E
Aach, John
Lee, Je Hyuk
Yankner, Bruce A
Boyden, Edward S
Church, George M
Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses
title Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses
title_full Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses
title_fullStr Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses
title_full_unstemmed Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses
title_short Barcoded oligonucleotides ligated on RNA amplified for multiplexed and parallel in situ analyses
title_sort barcoded oligonucleotides ligated on rna amplified for multiplexed and parallel in situ analyses
topic Methods Online
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8191787/
https://www.ncbi.nlm.nih.gov/pubmed/33693773
http://dx.doi.org/10.1093/nar/gkab120
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