2022
Characterization of MET Exon 14 Skipping Alterations (in NSCLC) and Identification of Potential Therapeutic Targets Using Whole Transcriptome Sequencing
Kim SY, Yin J, Bohlman S, Walker P, Dacic S, Kim C, Khan H, Liu SV, C. P, Nagasaka M, Reckamp KL, Abraham J, Uprety D, Wang F, Xiu J, Zhang J, Cheng H, Halmos B. Characterization of MET Exon 14 Skipping Alterations (in NSCLC) and Identification of Potential Therapeutic Targets Using Whole Transcriptome Sequencing. JTO Clinical And Research Reports 2022, 3: 100381. PMID: 36082279, PMCID: PMC9445394, DOI: 10.1016/j.jtocrr.2022.100381.Peer-Reviewed Original ResearchWhole transcriptome sequencingTranscriptome sequencingSplice siteMet stabilityDonor splice siteNext-generation sequencingTranscriptomic levelSplicing alterationsEnrichment analysisJunction pathwayPoint mutationsPotential therapeutic targetGenomic alterationsRNA expressionSequencingGene signaturePathwayMutational burdenGenomic profilingSynergistic increaseExpressionMost alterationsCheckpointTherapeutic targetSingle-sample gene
2018
Multiomics approach reveals metabolic changes in the heart at birth
Walejko J, Koelmel J, Garrett T, Edison A, Keller-Wood M. Multiomics approach reveals metabolic changes in the heart at birth. AJP Endocrinology And Metabolism 2018, 315: e1212-e1223. PMID: 30300011, PMCID: PMC6336953, DOI: 10.1152/ajpendo.00297.2018.Peer-Reviewed Original ResearchConceptsEnrichment analysisOverrepresentation enrichment analysisNewborn heartFetal heartTranscriptomic approachTranscriptomic levelT-testMetabolic changesFatty acidsMetabolomic levelsGlycerophospholipid metabolic pathwayTranscriptomic findingsMultiomics approachPropanoate metabolismTreatment of neonatesOxidative phosphorylationDifferential expressionDay of birthSingle-sample geneMetabolic pathwaysGreater abundanceStudent's t-testHeart failureRight ventricleIntraventricular septum
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