0000000000022613

AUTHOR

Gunter Meister

showing 6 related works from this author

Determination of enrichment factors for modified RNA in MeRIP experiments

2019

In the growing field of RNA modification, precipitation techniques using antibodies play an important role. However, little is known about their specificities and protocols are missing to assess their effectiveness. Here we present a method to assess enrichment factors after MeRIP-type pulldown experiments, here exemplified with a commercial antibody against N6-methyladenosine (m6A). Testing different pulldown and elution conditions, we measure enrichment factors of 4-5 using m6A-containing mRNAs against an unmodified control of identical sequence. Both types of mRNA carry 32P labels at different nucleotides, allowing their relative quantification in a mixture after digestion to nucleotides…

Models MolecularAdenosineAbsolute quantificationMethylationProtein Structure SecondaryGeneral Biochemistry Genetics and Molecular BiologyViral Proteins03 medical and health sciencesAdenosine TriphosphateRNA modificationEscherichia coliHumansImmunoprecipitationProtein Interaction Domains and MotifsNucleotideRNA MessengerMolecular Biology030304 developmental biologychemistry.chemical_classification0303 health sciencesMessenger RNACell-Free SystemChemistryElution030302 biochemistry & molecular biologyRNADNA-Directed RNA PolymerasesBiochemistryImmunoglobulin GIsotope LabelingChromatography Thin LayerPhosphorus RadioisotopesProtein BindingMethods
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Validation strategies for antibodies targeting modified ribonucleotides

2020

Chemical modifications are found on almost all RNAs and affect their coding and noncoding functions. The identification of m6A on mRNA and its important role in gene regulation stimulated the field to investigate whether additional modifications are present on mRNAs. Indeed, modifications including m1A, m5C, m7G, 2′-OMe, and Ψ were detected. However, since their abundances are low and tools used for their corroboration are often not well characterized, their physiological relevance remains largely elusive. Antibodies targeting modified nucleotides are often used but have limitations such as low affinity or specificity. Moreover, they are not always well characterized and due to the low abun…

chemistry.chemical_classificationRegulation of gene expression0303 health sciencesMessenger RNAbiologyNucleotidesmedicine.drug_class030302 biochemistry & molecular biologyMethodComputational biologyRibonucleotidesMonoclonal antibodyAntibodies03 medical and health sciencesLow affinitychemistrybiology.proteinmedicineRNANucleotideRNA MessengerAntibodyMolecular Biology030304 developmental biologyRNA
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Balancing of mitochondrial translation through METTL8-mediated m3C modification of mitochondrial tRNAs.

2021

Mitochondria contain a specific translation machinery for the synthesis of mitochondria-encoded respiratory chain components. Mitochondrial tRNAs (mt-tRNAs) are also generated from the mitochondrial DNA and, similar to their cytoplasmic counterparts, are post-transcriptionally modified. Here, we find that the RNA methyltransferase METTL8 is a mitochondrial protein that facilitates 3-methyl-cytidine (m3C) methylation at position C32 of the mt-tRNASer(UCN) and mt-tRNAThr. METTL8 knockout cells show a reduction in respiratory chain activity, whereas overexpression increases activity. In pancreatic cancer, METTL8 levels are high, which correlates with lower patient survival and an enhanced resp…

0303 health sciencesMitochondrial DNAMitochondrial translationRespiratory chainTranslation (biology)[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyCell BiologyMethylationMitochondrionBiologyCell biology03 medical and health sciences0302 clinical medicineMitochondrial respiratory chain[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Mitochondrial ribosomeMettl8 ; Rna Modification ; M(3)c ; Mt-trna ; TranslationMolecular Biology030217 neurology & neurosurgeryComputingMilieux_MISCELLANEOUS030304 developmental biology
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Inducible and reversible inhibition of mirna-mediated gene repression in vivo

2021

Although virtually all gene networks are predicted to be controlled by miRNAs, the contribution of this important layer of gene regulation to tissue homeostasis in adult animals remains unclear. Gain and loss-of-function experiments have provided key insights into the specific function of individual miRNAs, but effective genetic tools to study the functional consequences of global inhibition of miRNA activity in vivo are lacking. Here we report the generation and characterization of a genetically engineered mouse strain in which miRNA-mediated gene repression can be reversibly inhibited without affecting miRNA biogenesis or abundance. We demonstrate the usefulness of this strategy by invest…

QH301-705.5ScienceGene regulatory networkregenerative medicineMice TransgenicBiologyGeneral Biochemistry Genetics and Molecular BiologyMiceT6BPregnancystem cellsmicroRNAAnimalsHomeostasisRNA-Induced Silencing ComplexRegenerationmolecular biologyGene Regulatory NetworksTransgenesBiology (General)Tissue homeostasisargonautemousemiRNARegulation of gene expressionGeneral Immunology and MicrobiologymicroRNAGeneral NeuroscienceRegeneration (biology)QRRISCmiRISCGeneral MedicineCell BiologyArgonauteStem Cells and Regenerative MedicineCell biologyTNRC6MicroRNAsMedicineFemaleStem cellPeptidesFunction (biology)Research Article
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Inducible and reversible inhibition of miRNA-mediated gene repression in vivo

2021

Although virtually all gene networks are predicted to be controlled by miRNAs, the contribution of this important layer of gene regulation to tissue homeostasis in adult animals remains unclear. Gain and loss of function experiments have provided key insights into the specific function of individual miRNAs, but effective genetic tools to study the functional consequences of global inhibition of miRNA activity in vivo are lacking. Here we report the generation and characterization of a genetically engineered mouse strain in which miRNA-mediated gene repression can be reversibly inhibited without affecting miRNA biogenesis or abundance. We demonstrate the usefulness of this strategy by invest…

Regulation of gene expressionGenetically Engineered MouseRegeneration (biology)microRNAGene regulatory networkBiologyLoss functionFunction (biology)Tissue homeostasisCell biology
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Author response: Inducible and reversible inhibition of miRNA-mediated gene repression in vivo

2021

In vivoChemistrymicroRNAReversible inhibitionGene RepressionCell biology
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