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Human lineage tracing enabled by mitochondrial mutations and single cell genomics [TF1_clones_ATAC]
- Authors
- Ludwig, Leif S.Lareau, Caleb A.
- Description
Summary from GEO: "Lineage tracing provides unprecedented insights into the fate of individual cells and their progeny in complex organisms. While effective genetic approaches have been developed in vitro and in animal models, these cannot be used to interrogate human physiology in vivo. Instead, naturally occurring somatic mutations have been utilized to infer clonality and lineal relationships...
- Subject
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Cell LineageChromatin Immunoprecipitation SequencingDNA, MitochondrialSingle-Cell Analysis
- Access Rights
- Free to All
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Human lineage tracing enabled by mitochondrial mutations and single cell genomics [TF1_clones_scRNA]
- Authors
- Ludwig, Leif S.Lareau, Caleb A.
- Description
Summary from GEO: "Lineage tracing provides unprecedented insights into the fate of individual cells and their progeny in complex organisms. While effective genetic approaches have been developed in vitro and in animal models, these cannot be used to interrogate human physiology in vivo. Instead, naturally occurring somatic mutations have been utilized to infer clonality and lineal relationships...
- Subject
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Cell LineageDNA, MitochondrialRNA-SeqSingle-Cell Analysis
- Access Rights
- Free to All
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Human lineage tracing enabled by mitochondrial mutations and single cell genomics [TF1_clones_RNA]
- Authors
- Ludwig, Leif S.Lareau, Caleb A.
- Description
Summary from GEO: "Lineage tracing provides unprecedented insights into the fate of individual cells and their progeny in complex organisms. While effective genetic approaches have been developed in vitro and in animal models, these cannot be used to interrogate human physiology in vivo. Instead, naturally occurring somatic mutations have been utilized to infer clonality and lineal relationships...
- Subject
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Cell LineageDNA, MitochondrialRNA-SeqSingle-Cell Analysis
- Access Rights
- Free to All
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Reversal of lineage plasticity in RB1/TP53-deleted prostate cancer through FGFR and Janus kinase inhibition
- Authors
- Sawyers, Charles L.Pe'er, DanaChan, JosephKarthaus, Wouter Richard
- Description
Summary from GEO: "The inherent plasticity of tumor cells provides a mechanism of resistance to many molecularly targeted therapies, exemplified by adeno-to-neuroendocrine lineage transitions seen in prostate and lung cancer. Here we investigate the root cause of this lineage plasticity in a primary murine prostate organoid model that mirrors the lineage transition seen in patients. These cells lose...
- Subject
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Cell LineageGene DeletionGenes, Tumor SuppressorJanus KinasesProstatic NeoplasmsProtein-Tyrosine KinasesSingle-Cell Analysis
- Access Rights
- Free to All
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CUT&RUN Supplementary Data from Smarca4 Inactivation Promotes Lineage-Specific Transformation and Early Metastatic Features in the Lung
- Authors
- Concepcion, Carla P.Ma, SaiLaFave, Lindsay M.Bhutkar, Arjun19 more author(s)...
- Description
Description from Figshare: "Processed data for CUT&RUN of isogenic SMARCA4-WT and -KO cell lines"
- Subject
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Adenocarcinoma of LungCell LineageChromatin Immunoprecipitation SequencingGene Knockout TechniquesLung NeoplasmsNeoplasm MetastasisTranscription Factors
- Access Rights
- Free to All
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Bulk ATAC-seq Supplementary Data from Smarca4 Inactivation Promotes Lineage-Specific Transformation and Early Metastatic Features in the Lung
- Authors
- Concepcion, Carla P.Ma, SaiLaFave, Lindsay M.Bhutkar, Arjun19 more author(s)...
- Description
Description from Figshare: "Processed data for bulk ATAC-seq of isogenic SMARCA4-WT and -KO cell lines"
- Subject
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Adenocarcinoma of LungCell LineageChromatin Immunoprecipitation SequencingLung NeoplasmsNeoplasm MetastasisTranscription Factors
- Access Rights
- Free to All
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RNA-seq (primary tumors) Supplementary Data from Smarca4 Inactivation Promotes Lineage-Specific Transformation and Early Metastatic Features in the Lung
- Authors
- Concepcion, Carla P.Ma, SaiLaFave, Lindsay M.Bhutkar, Arjun19 more author(s)...
- Description
Description from Figshare: "Processed data for bulk RNA-seq of primary tumors isolated from KP, KPS-HET and KPS animals"
- Subject
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Adenocarcinoma of LungCell LineageLung NeoplasmsNeoplasm MetastasisRNA-SeqTranscription Factors
- Access Rights
- Free to All
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RNA-seq (cell line) Supplementary Data from Smarca4 Inactivation Promotes Lineage-Specific Transformation and Early Metastatic Features in the Lung
- Authors
- Concepcion, Carla P.Ma, SaiLaFave, Lindsay M.Bhutkar, Arjun19 more author(s)...
- Description
Description from Figshare: "Processed data for bulk RNA-seq of isogenic SMARCA4-WT and -KO cell lines"
- Subject
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Adenocarcinoma of LungCell LineageLung NeoplasmsNeoplasm MetastasisRNA-SeqTranscription Factors
- Access Rights
- Free to All
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Supplementary Table S1 from Smarca4 Inactivation Promotes Lineage-Specific Transformation and Early Metastatic Features in the Lung
- Authors
- Concepcion, Carla P.Ma, SaiLaFave, Lindsay M.Bhutkar, Arjun19 more author(s)...
- Description
Description from Figshare: "Mutations and copy number alterations in PDX models used in this study"
- Subject
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Adenocarcinoma of LungCell LineageDNA Copy Number VariationsLung NeoplasmsNeoplasm Metastasis
- Access Rights
- Free to All
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PDGFRβ signaling cooperates with β-catenin to modulate c-Abl and biologic behavior of desmoid-type fibromatosis [RNA-seq II]
- Authors
- Hu, JiaCrago, Aimee M.
- Description
Summary from GEO: "The mechanisms underlying oncogenesis in desmoid-type fibromatosis are poorly understood. This project sought to understand how β-catenin may function to promote desmoid formation and how external signaling by PDGFRβ modulates this activity. To examine this question, RNA-seq was performed on CTNNB1 knock-downs. Gene set enrichment analysis suggested that the oncogene controlled...
- Subject
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CarcinogenesisCell LineageFibromatosis, AggressiveGene Knockdown TechniquesRNA-Seq
- Access Rights
- Free to All