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Uncovering functional lncRNAs by scRNA-seq with ELATUS
by
Goñi, Enrique
, Abad, Amaya
, Santisteban, Marta
, Huarte, Maite
, Hernaez, Mikel
, Mas, Aina Maria
, Gonzalez, Jovanna
, Fortes, Puri
in
45
/ 45/91
/ 631/114/2397
/ 631/114/2785
/ 631/67/69
/ Annotations
/ Biological effects
/ Breast cancer
/ Computational Biology - methods
/ Computer applications
/ Gene expression
/ Gene Expression Profiling - methods
/ Humanities and Social Sciences
/ Humans
/ multidisciplinary
/ Non-coding RNA
/ RNA, Long Noncoding - genetics
/ RNA, Long Noncoding - metabolism
/ RNA-Seq - methods
/ Science
/ Science (multidisciplinary)
/ Sequence Analysis, RNA - methods
/ Single-Cell Analysis - methods
/ Single-Cell Gene Expression Analysis
/ Workflow
2024
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Uncovering functional lncRNAs by scRNA-seq with ELATUS
by
Goñi, Enrique
, Abad, Amaya
, Santisteban, Marta
, Huarte, Maite
, Hernaez, Mikel
, Mas, Aina Maria
, Gonzalez, Jovanna
, Fortes, Puri
in
45
/ 45/91
/ 631/114/2397
/ 631/114/2785
/ 631/67/69
/ Annotations
/ Biological effects
/ Breast cancer
/ Computational Biology - methods
/ Computer applications
/ Gene expression
/ Gene Expression Profiling - methods
/ Humanities and Social Sciences
/ Humans
/ multidisciplinary
/ Non-coding RNA
/ RNA, Long Noncoding - genetics
/ RNA, Long Noncoding - metabolism
/ RNA-Seq - methods
/ Science
/ Science (multidisciplinary)
/ Sequence Analysis, RNA - methods
/ Single-Cell Analysis - methods
/ Single-Cell Gene Expression Analysis
/ Workflow
2024
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Uncovering functional lncRNAs by scRNA-seq with ELATUS
by
Goñi, Enrique
, Abad, Amaya
, Santisteban, Marta
, Huarte, Maite
, Hernaez, Mikel
, Mas, Aina Maria
, Gonzalez, Jovanna
, Fortes, Puri
in
45
/ 45/91
/ 631/114/2397
/ 631/114/2785
/ 631/67/69
/ Annotations
/ Biological effects
/ Breast cancer
/ Computational Biology - methods
/ Computer applications
/ Gene expression
/ Gene Expression Profiling - methods
/ Humanities and Social Sciences
/ Humans
/ multidisciplinary
/ Non-coding RNA
/ RNA, Long Noncoding - genetics
/ RNA, Long Noncoding - metabolism
/ RNA-Seq - methods
/ Science
/ Science (multidisciplinary)
/ Sequence Analysis, RNA - methods
/ Single-Cell Analysis - methods
/ Single-Cell Gene Expression Analysis
/ Workflow
2024
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Journal Article
Uncovering functional lncRNAs by scRNA-seq with ELATUS
2024
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Overview
Long non-coding RNAs (lncRNAs) play fundamental roles in cellular processes and pathologies, regulating gene expression at multiple levels. Despite being highly cell type-specific, their study at single-cell (sc) level is challenging due to their less accurate annotation and low expression compared to protein-coding genes. Here, we systematically benchmark different preprocessing methods and develop a computational framework, named ELATUS, based on the combination of the pseudoaligner Kallisto with selective functional filtering. ELATUS enhances the detection of functional lncRNAs from scRNA-seq data, detecting their expression with higher concordance than standard methods with the ATAC-seq profiles in single-cell multiome data. Interestingly, the better results of ELATUS are due to its advanced performance with an inaccurate reference annotation such as that of lncRNAs. We independently confirm the expression patterns of cell type-specific lncRNAs exclusively detected with ELATUS and unveil biologically important lncRNAs, such as
AL121895.1
, a previously undocumented cis-repressor lncRNA, whose role in breast cancer progression is unnoticed by traditional methodologies. Our results emphasize the necessity for an alternative scRNA-seq workflow tailored to lncRNAs that sheds light on the multifaceted roles of lncRNAs.
The inaccurate annotation of long noncoding RNAs (lncRNAs) hampers their detection by scRNA-seq. The computational workflow ELATUS, based on the pseudoaligner Kallisto, addresses this problem and uncovers functional lncRNAs, such as AL121895.1, that participates in breast cancer.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 45/91
/ Computational Biology - methods
/ Gene Expression Profiling - methods
/ Humanities and Social Sciences
/ Humans
/ RNA, Long Noncoding - genetics
/ RNA, Long Noncoding - metabolism
/ Science
/ Sequence Analysis, RNA - methods
/ Single-Cell Analysis - methods
/ Single-Cell Gene Expression Analysis
/ Workflow
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