2024
Recent developments, opportunities, and challenges in the study of mRNA pseudouridylation
Gilbert W. Recent developments, opportunities, and challenges in the study of mRNA pseudouridylation. RNA 2024, 30: rna.079975.124. PMID: 38531650, PMCID: PMC11019745, DOI: 10.1261/rna.079975.124.Peer-Reviewed Original ResearchBeyond reader proteins: RNA binding proteins and RNA modifications in conversation to regulate gene expression
Fagre C, Gilbert W. Beyond reader proteins: RNA binding proteins and RNA modifications in conversation to regulate gene expression. Wiley Interdisciplinary Reviews - RNA 2024, 15: e1834. PMID: 38444048, DOI: 10.1002/wrna.1834.Peer-Reviewed Original ResearchConceptsRNA-binding proteinsRNA modificationsMRNA modificationRNA structureRNA interactionsRNA Processing > RNA EditingRNA-binding protein's bindingEffects of RNA modificationsBinding proteinGene expressionRNA-protein interactomePost-transcriptional mRNA modificationDihydrouridine (DRegulate gene expressionRNA substratesProtein-RNARNA editingRNA functionReader proteinsModification statusN1-methyladenosineCellular machinerySequence contextSecondary structureBiochemical properties
2023
mRNA Regulation by RNA Modifications
Gilbert W, Nachtergaele S. mRNA Regulation by RNA Modifications. Annual Review Of Biochemistry 2023, 92: 175-198. PMID: 37018844, PMCID: PMC11192554, DOI: 10.1146/annurev-biochem-052521-035949.Peer-Reviewed Original Research
2019
Histone H3 trimethylation at lysine 36 guides m6A RNA modification co-transcriptionally
Huang H, Weng H, Zhou K, Wu T, Zhao BS, Sun M, Chen Z, Deng X, Xiao G, Auer F, Klemm L, Wu H, Zuo Z, Qin X, Dong Y, Zhou Y, Qin H, Tao S, Du J, Liu J, Lu Z, Yin H, Mesquita A, Yuan CL, Hu YC, Sun W, Su R, Dong L, Shen C, Li C, Qing Y, Jiang X, Wu X, Sun M, Guan JL, Qu L, Wei M, Müschen M, Huang G, He C, Yang J, Chen J. Histone H3 trimethylation at lysine 36 guides m6A RNA modification co-transcriptionally. Nature 2019, 567: 414-419. PMID: 30867593, PMCID: PMC6438714, DOI: 10.1038/s41586-019-1016-7.Peer-Reviewed Original ResearchConceptsM6A methyltransferase complexHistone H3 trimethylationH3 trimethylationHistone modificationsImportant post-transcriptional mechanismMouse embryonic stem cellsGene expression regulationRNA polymerase IIPrevalent internal modificationPost-transcriptional mechanismsEmbryonic stem cellsN6-methyladenosine (m<sup>6</sup>A) mRNA modificationM6A depositionTranscription elongationNascent RNAMethyltransferase complexPolymerase IIExpression regulationGene expression1RNA methylationMRNA modificationMETTL14 knockdownH3K36me3M6A modificationCell stemness
2016
Messenger RNA modifications: Form, distribution, and function
Gilbert WV, Bell TA, Schaening C. Messenger RNA modifications: Form, distribution, and function. Science 2016, 352: 1408-1412. PMID: 27313037, PMCID: PMC5094196, DOI: 10.1126/science.aad8711.Peer-Reviewed Original ResearchConceptsStable noncoding RNAsMRNA target siteOrganismal phenotypesDevelopmental regulatorsNoncoding RNAsMRNA modificationMolecular consequencesMessenger RNAMolecular effectsRNATarget siteRecent technical advancesDistinct modificationsSparse modificationEpitranscriptomeSplicingMethyladenosineRegulatorSpeciesTechnical advancesModificationPhenotypeRegulationFunctionCells
This site is protected by hCaptcha and its Privacy Policy and Terms of Service apply