Antariksh Tyagi, PhD
Associate Research Scientist in GeneticsCards
About
Research
Publications
Featured Publications
CFTR haplotype phasing using long-read genome sequencing from ultra-low input DNA
CFTR haplotype phasing using long-read genome sequencing from ultra-low input DNA N Gandotra, A Tyagi, I Tikhonova, C Storer, C Scharfe - Genetics in Medicine Open, 2025Peer-Reviewed Original Research In PressThe amalgam of naive CD4+ T cell transcriptional states is reconfigured by helminth infection to dampen the amplitude of the immune response
Even Z, Meli A, Tyagi A, Vidyarthi A, Briggs N, de Kouchkovsky D, Kong Y, Wang Y, Waizman D, Rice T, De Kumar B, Wang X, Palm N, Craft J, Basu M, Ghosh S, Rothlin C. The amalgam of naive CD4+ T cell transcriptional states is reconfigured by helminth infection to dampen the amplitude of the immune response. Immunity 2024, 57: 1893-1907.e6. PMID: 39096910, PMCID: PMC11421571, DOI: 10.1016/j.immuni.2024.07.006.Peer-Reviewed Original ResearchT cell receptorImmune responseNaive CD4<sup>+</sup> T cellsCD4<sup>+</sup> T cellsIFN-IHelminth infectionsNippostrongylus brasiliensis infectionDecreased immune responseType I interferonNaive TT cellsMemory-likeUnrelated antigensTranscriptional changesExtracellular matrixSPF miceCell receptorsI interferonGerm-freeResponse to certain environmental cuesInfectionMiceFunctional changesCell transcriptional statesTranscriptional heterogeneity
2024
Functional analysis of regA paralog rlsD in Volvox carteri.
Jiménez-Marín B, Ortega-Escalante JA, Tyagi A, Seah J, Olson BJSC, Miller SM. Functional analysis of regA paralog rlsD in Volvox carteri. Plant J 2024, 120: 1798-1825. PMID: 39436924, DOI: 10.1111/tpj.17081.Peer-Reviewed Original ResearchOverexpression of Malat1 drives metastasis through inflammatory reprogramming of the tumor microenvironment
Martinez-Terroba E, Plasek-Hegde L, Chiotakakos I, Li V, de Miguel F, Robles-Oteiza C, Tyagi A, Politi K, Zamudio J, Dimitrova N. Overexpression of Malat1 drives metastasis through inflammatory reprogramming of the tumor microenvironment. Science Immunology 2024, 9: eadh5462. PMID: 38875320, DOI: 10.1126/sciimmunol.adh5462.Peer-Reviewed Original ResearchConceptsTumor microenvironmentLung adenocarcinomaMetastatic diseasePromoting metastatic diseaseGlobal chromatin accessibilityMetastasis-associated lung adenocarcinoma transcript 1Overexpression of MALAT1Lung adenocarcinoma transcript 1Lung adenocarcinoma metastasisCCL2 blockadeInflammatory reprogrammingEnhanced cell mobilityMacrophage depletionMechanism of actionTumor typesTumor progressionMouse modelCell mobilizationTumorLong noncoding RNAsParacrine secretionMetastasisCell linesTranscript 1MicroenvironmentHigh NaCl Concentrations in Water Are Associated with Developmental Abnormalities and Altered Gene Expression in Zebrafish
Seli D, Prendergast A, Ergun Y, Tyagi A, Taylor H. High NaCl Concentrations in Water Are Associated with Developmental Abnormalities and Altered Gene Expression in Zebrafish. International Journal Of Molecular Sciences 2024, 25: 4104. PMID: 38612913, PMCID: PMC11012806, DOI: 10.3390/ijms25074104.Peer-Reviewed Original ResearchConceptsNaCl concentrationGene expressionIncreasing NaCl concentrationATM signaling pathwayUninflated swim bladderSwim bladder developmentHigh NaCl concentrationsEmbryo growthAssociated with developmental abnormalitiesSwim bladderLarval stageEarly embryo growthEmbryonic deathDevelopmental abnormalitiesSignaling pathwayDevelopment of zebrafishGenes SHHCalcium chlorideGenesSodium chlorideE3 mediumStages of developmentZebrafish embryosAffected ecosystemsPotassium chlorideA scalable and cost-efficient rRNA depletion approach to enrich RNAs for molecular biology investigations
Singh A, Xue A, Tai J, Mbadugha F, Obi P, Mascarenhas R, Tyagi A, Siena A, Chen Y. A scalable and cost-efficient rRNA depletion approach to enrich RNAs for molecular biology investigations. RNA 2024, 30: rna.079761.123. PMID: 38485192, PMCID: PMC11098455, DOI: 10.1261/rna.079761.123.Peer-Reviewed Original ResearchConceptsDepleting rRNACellular processesAbundance of rRNAMolecular biological investigationsNon-rRNA transcriptsComplex regulatory networkInvestigate gene expressionRRNA removalRRNA moleculesHistone mRNARegulatory networksSmall RNAsPositive selectionRRNARNA inputBiological investigationsTranscriptome analysisLong noncoding RNAsGene expressionRegulatory mechanismsRNAOff-target effectsNoncoding RNAsCircular RNAsTranscriptionShort peptides based on the conserved regions of MIEN1 protein exhibit anticancer activity by targeting the MIEN1 signaling pathway.
Tripathi AK, Desai PP, Tyagi A, Lampe JB, Srivastava Y, Donkor M, Jones HP, Dzyuba SV, Crossley E, Williams NS, Vishwanatha JK. Short peptides based on the conserved regions of MIEN1 protein exhibit anticancer activity by targeting the MIEN1 signaling pathway. J Biol Chem 2024, 300: 105680. PMID: 38272230, DOI: 10.1016/j.jbc.2024.105680.Peer-Reviewed Original ResearchPrior Influenza Infection Mitigates SARS-CoV-2 Disease in Syrian Hamsters
Di Pietro C, Haberman A, Lindenbach B, Smith P, Bruscia E, Allore H, Vander Wyk B, Tyagi A, Zeiss C. Prior Influenza Infection Mitigates SARS-CoV-2 Disease in Syrian Hamsters. Viruses 2024, 16: 246. PMID: 38400021, PMCID: PMC10891789, DOI: 10.3390/v16020246.Peer-Reviewed Original ResearchConceptsTransient gene expressionSARS-CoV-2Viral replication pathwayReplication pathwayAntiviral pathwaysEndemism patternsUpregulation of innateGene expressionQuantitative RT-PCRMitigated weight lossDual-infected animalsSARS-CoV-2 viral loadSARS-CoV-2 infectionSyrian hamstersSeasonal infection ratesSARS-CoV-2 inoculationLungs of animalsIndividual virusesSARS-CoV-2 diseaseUpper respiratory tractH1N1 infectionRT-PCRBronchoalveolar lavageViral loadCytokine levelsEditorial: The molecular basis of programmed cell death and neuroinflammation in neurodegenerative diseases.
Soni C, Tyagi A, Wang X, Mathur R. Editorial: The molecular basis of programmed cell death and neuroinflammation in neurodegenerative diseases. Front Immunol 2024, 14: 1359136. PMID: 38283364, DOI: 10.3389/fimmu.2023.1359136.Commentaries, Editorials and Letters
2023
Transcriptome analysis reveals temporally regulated genetic networks during Drosophila border cell collective migration.
Burghardt E, Rakijas J, Tyagi A, Majumder P, Olson BJSC, McDonald JA. Transcriptome analysis reveals temporally regulated genetic networks during Drosophila border cell collective migration. BMC Genomics 2023, 24: 728. PMID: 38041052, DOI: 10.1186/s12864-023-09839-8.Peer-Reviewed Original Research
Academic Achievements & Community Involvement
Get In Touch
Contacts
Academic Office Number
Mailing Address
Yale Center for Genome Analysis (YCGA)
830 West campus Dr
West Haven, CT 06516
United States