Featured Publications
Insight into the Tumor Suppression Mechanism from the Structure of Human Polypyrimidine Splicing Factor (PSF/SFPQ) Complexed with a 30mer RNA from Murine Virus-like 30S Transcript‑1
Wang J, Sachpatzidis A, Christian TD, Lomakin IB, Garen A, Konigsberg WH. Insight into the Tumor Suppression Mechanism from the Structure of Human Polypyrimidine Splicing Factor (PSF/SFPQ) Complexed with a 30mer RNA from Murine Virus-like 30S Transcript‑1. Biochemistry 2022, 61: 1723-1734. PMID: 35998361, DOI: 10.1021/acs.biochem.2c00192.Peer-Reviewed Original ResearchConceptsRNA recognition motifSplicing factorsRNA bindingÅ resolution crystal structureTranscript 1DNA-binding domainRNA-binding pocketTumor suppression mechanismNew regulatory mechanismTumor suppressor proteinResolution crystal structureMurine virusesAcid proteinSuppressor proteinRecognition motifLung adenocarcinoma transcript 1Gene expressionRegulatory mechanismsApo structureRNA virusesHuman diseasesRNABinding pocketsHuman metastasesPositive cooperativityRecent insight into intermediate filament structure
Eldirany SA, Lomakin IB, Ho M, Bunick CG. Recent insight into intermediate filament structure. Current Opinion In Cell Biology 2020, 68: 132-143. PMID: 33190098, PMCID: PMC7925366, DOI: 10.1016/j.ceb.2020.10.001.Peer-Reviewed Original ResearchConceptsIntermediate filamentsAssembly mechanismVariable N-terminalMultiple cellular processesCentral rod domainIntermediate filament structureCoil 1BCellular processesStudy of keratinsTail domainFilament assemblyRod domainC-terminalN-terminalElectrostatic surfacePathologic mutationsKey playersFilament structureRecent insightsComplex formationProteinHuman tissuesGlial fibrillary acidic proteinAcidic proteinDomainNonstructural Protein 1 of SARS-CoV-2 Is a Potent Pathogenicity Factor Redirecting Host Protein Synthesis Machinery toward Viral RNA
Yuan S, Peng L, Park JJ, Hu Y, Devarkar SC, Dong MB, Shen Q, Wu S, Chen S, Lomakin IB, Xiong Y. Nonstructural Protein 1 of SARS-CoV-2 Is a Potent Pathogenicity Factor Redirecting Host Protein Synthesis Machinery toward Viral RNA. Molecular Cell 2020, 80: 1055-1066.e6. PMID: 33188728, PMCID: PMC7833686, DOI: 10.1016/j.molcel.2020.10.034.Peer-Reviewed Original ResearchConceptsInternal ribosome entry site RNANonstructural protein 1Host protein synthesis machineryMRNA entry channelProtein synthesis machineryCryo-EM structureProtein 1Major pathogenicity factorsDifferential expression analysisMRNA-seq dataCellular transcriptomePreinitiation complexSynthesis machineryHuman lung originTranslation inhibitionPathogenicity factorsExpression analysisSite RNAHost viabilityNSP1Protein synthesisEntry channelViral proteinsUnknown mechanismViral RNAPhysical Association of Eukaryotic Initiation Factor 4G (eIF4G) with eIF4A Strongly Enhances Binding of eIF4G to the Internal Ribosomal Entry Site of Encephalomyocarditis Virus and Is Required for Internal Initiation of Translation
Lomakin I, Hellen C, Pestova T. Physical Association of Eukaryotic Initiation Factor 4G (eIF4G) with eIF4A Strongly Enhances Binding of eIF4G to the Internal Ribosomal Entry Site of Encephalomyocarditis Virus and Is Required for Internal Initiation of Translation. Molecular And Cellular Biology 2000, 20: 6019-6029. PMID: 10913184, PMCID: PMC86078, DOI: 10.1128/mcb.20.16.6019-6029.2000.Peer-Reviewed Original ResearchConceptsInternal ribosomal entry siteEMCV internal ribosomal entry siteEIF4GAdditional amino-terminal sequenceEukaryotic initiation factor 4GRNA recognition motifEukaryotic initiation factor 4GIInternal ribosomal entryEntry siteComplex formationBeta-globin mRNAAmino-terminal sequenceEncephalomyocarditis virus internal ribosomal entry siteRibosomal entryRecognition motifLike domainMutational analysisPhysical associationInternal initiationHigh-affinity bindingBinding fragmentSpecific interactionsRNASimilar affinitySpecific high-affinity bindingMolecular mechanisms of translation initiation in eukaryotes
Pestova T, Kolupaeva V, Lomakin I, Pilipenko E, Shatsky I, Agol V, Hellen C. Molecular mechanisms of translation initiation in eukaryotes. Proceedings Of The National Academy Of Sciences Of The United States Of America 2001, 98: 7029-7036. PMID: 11416183, PMCID: PMC34618, DOI: 10.1073/pnas.111145798.Peer-Reviewed Original ResearchDendritic BC1 RNA: Functional Role in Regulation of Translation Initiation
Wang H, Iacoangeli A, Popp S, Muslimov IA, Imataka H, Sonenberg N, Lomakin IB, Tiedge H. Dendritic BC1 RNA: Functional Role in Regulation of Translation Initiation. Journal Of Neuroscience 2002, 22: 10232-10241. PMID: 12451124, PMCID: PMC1828542, DOI: 10.1523/jneurosci.22-23-10232.2002.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsBrain ChemistryCell-Free SystemCells, CulturedDendritesElectrophoretic Mobility Shift AssayEukaryotic Initiation Factor-4AEukaryotic Initiation FactorsGene Expression RegulationMacromolecular SubstancesNeuronal PlasticityNeuronsPeptide Chain Initiation, TranslationalPoly(A)-Binding ProteinsProtein BiosynthesisRatsRats, Sprague-DawleyRepressor ProteinsRibosomesRNA, MessengerRNA, Small CytoplasmicConceptsLocal protein synthesisBC1 RNATranslation initiationInternal ribosome entry mechanismCap-dependent translation initiationProtein synthesisFunctional roleMessenger RNASmall ribosomal subunitTranslational control mechanismsLevel of initiationDendritic BC1 RNAPlasticity of synapsesRepression pathwaySpecific repressorPreinitiation complexTranslational controlInitiation factorsRibosomal subunitBiochemical experimentsLocal translationInternal initiationRNAEntry mechanismDensity gradient centrifugationPosition of eukaryotic initiation factor eIF1 on the 40S ribosomal subunit determined by directed hydroxyl radical probing
Lomakin IB, Kolupaeva VG, Marintchev A, Wagner G, Pestova TV. Position of eukaryotic initiation factor eIF1 on the 40S ribosomal subunit determined by directed hydroxyl radical probing. Genes & Development 2003, 17: 2786-2797. PMID: 14600024, PMCID: PMC280627, DOI: 10.1101/gad.1141803.Peer-Reviewed Original ResearchAnimalsBinding SitesCodon, InitiatorEukaryotic Initiation Factor-1Eukaryotic Initiation Factor-3HumansHydroxyl RadicalModels, MolecularNucleic Acid ConformationPeptide Chain Initiation, TranslationalProtein BindingProtein FootprintingProtein Structure, TertiaryProtein SubunitsRecombinant Fusion ProteinsRibosomesRNA, MessengerRNA, RibosomalThe initiation of mammalian protein synthesis and mRNA scanning mechanism
Lomakin IB, Steitz TA. The initiation of mammalian protein synthesis and mRNA scanning mechanism. Nature 2013, 500: 307-311. PMID: 23873042, PMCID: PMC3748252, DOI: 10.1038/nature12355.Peer-Reviewed Original ResearchConceptsSmall ribosomal subunitTranslation initiationRibosomal subunitMammalian translation initiationProtein synthesisInitiator transfer RNAMammalian protein synthesisMultiple initiation factorsMRNA scanningTransfer RNAInitiation factorsInitiation codonConformational changesMessenger RNAFunctional implicationsEukaryotesDistinct stepsP siteSubunitsRNAFunctional stateEIF1ARibosomesEIF1Codon
2016
Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition
Gagnon MG, Roy RN, Lomakin IB, Florin T, Mankin AS, Steitz TA. Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition. Nucleic Acids Research 2016, 44: 2439-2450. PMID: 26809677, PMCID: PMC4797290, DOI: 10.1093/nar/gkw018.Peer-Reviewed Original ResearchAmino Acid SequenceAnimalsAnti-Bacterial AgentsAntimicrobial Cationic PeptidesBinding SitesCattleCrystallography, X-RayEscherichia coliInsect ProteinsModels, MolecularMolecular Sequence DataPeptides, CyclicProtein BindingProtein BiosynthesisRibosomesRNA, MessengerRNA, TransferSpecies SpecificityThermus thermophilus
2004
Position of the CrPV IRES on the 40S subunit and factor dependence of IRES/80S ribosome assembly
Pestova TV, Lomakin IB, Hellen CU. Position of the CrPV IRES on the 40S subunit and factor dependence of IRES/80S ribosome assembly. EMBO Reports 2004, 5: 906-913. PMID: 15332113, PMCID: PMC1299141, DOI: 10.1038/sj.embor.7400240.Peer-Reviewed Original Research