<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://kaiser-lab.de/wp-sitemap.xsl" ?>
<urlset xmlns="http://www.sitemaps.org/schemas/sitemap/0.9"><url><loc>https://kaiser-lab.de/publication/detection-of-rna-modifications/</loc><lastmod>2022-06-09T03:14:47+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/a-multifunctional-bioconjugate-module-for-versatile-photoaffinity-labeling-and-click-chemistry-of-rna/</loc><lastmod>2022-06-09T03:19:29+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/related-haloarchaeal-pleomorphic-viruses-contain-different-genome-types/</loc><lastmod>2022-06-09T03:19:22+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/rna-cytosine-methylation-by-dnmt2-and-nsun2-promotes-trna-stability-and-protein-synthesis/</loc><lastmod>2022-06-09T03:19:18+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/structure-function-relationship-of-substituted-bromomethylcoumarins-in-nucleoside-specificity-of-rna-alkylation/</loc><lastmod>2022-06-09T03:19:12+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/aberrant-methylation-of-trnas-links-cellular-stress-to-neuro-developmental-disorders/</loc><lastmod>2022-06-09T03:19:07+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/partial-methylation-at-am100-in-18s-rrna-of-bakers-yeast-reveals-ribosome-heterogeneity-on-the-level-of-eukaryotic-rrna-modification/</loc><lastmod>2022-06-09T03:19:01+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/profiling-of-rna-modifications-by-multiplexed-stable-isotope-labelling/</loc><lastmod>2022-06-09T03:18:56+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/absolute-and-relative-quantification-of-rna-modifications-via-biosynthetic-isotopomers/</loc><lastmod>2022-06-09T03:18:51+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/dye-label-interference-with-rna-modification-reveals-5-fluorouridine-as-non-covalent-inhibitor/</loc><lastmod>2022-06-09T03:18:47+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/eukaryotic-rrna-modification-by-yeast-5-methylcytosine-methyltransferases-and-human-proliferation-associated-antigen-p120/</loc><lastmod>2022-06-09T03:18:42+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/a-platform-for-discovery-and-quantification-of-modified-ribonucleosides-in-rna-application-to-stress-induced-reprogramming-of-trna-modifications/</loc><lastmod>2022-06-09T03:18:37+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/an-extensive-allelic-series-of-drosophila-kae1-mutants-reveals-diverse-and-tissue-specific-requirements-for-t6a-biogenesis/</loc><lastmod>2022-06-09T03:18:32+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/variable-presence-of-5-methylcytosine-in-commercial-rna-and-dna/</loc><lastmod>2022-06-09T03:18:27+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/novel-genomic-island-modifies-dna-with-7-deazaguanine-derivatives/</loc><lastmod>2022-06-09T03:18:22+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/the-rna-methyltransferase-dnmt2-methylates-dna-in-the-structural-context-of-a-trna/</loc><lastmod>2022-06-09T03:18:17+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/detection-of-nucleic-acid-modifications-by-chemical-reagents/</loc><lastmod>2022-06-09T03:18:11+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/observing-the-fate-of-trna-and-its-modifications-by-nucleic-acid-isotope-labeling-mass-spectrometry-nail-ms/</loc><lastmod>2022-06-09T03:18:06+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/trmt1-catalyzed-trna-modifications-are-required-for-redox-homeostasis-to-ensure-proper-cellular-proliferation-and-oxidative-stress-survival/</loc><lastmod>2022-06-09T03:18:00+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/oxidation-of-labile-phosphorothioate-dna-modifications-leads-to-lethal-genomic-instability/</loc><lastmod>2022-06-09T03:17:19+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/surpassing-limits-of-static-rna-modification-analysis-with-dynamic-nail-ms/</loc><lastmod>2022-06-09T03:17:13+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/nail-ms-in-e-coli-determines-the-source-and-fate-of-methylation-in-trna/</loc><lastmod>2022-06-09T03:17:07+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/isotope-dilution-mass-spectrometry-for-exact-quantification-of-noncanonical-dna-nucleosides/</loc><lastmod>2022-06-09T03:16:59+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/production-and-application-of-stable-isotope-labeled-internal-standards-for-rna-modification-analysis/</loc><lastmod>2022-06-09T03:16:53+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/benefits-of-stable-isotope-labeling-in-rna-analysis/</loc><lastmod>2022-06-09T03:16:48+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/cytosine-5-rna-methylation-links-protein-synthesis-to-cell-metabolism/</loc><lastmod>2022-06-09T03:16:42+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/formation-of-trna-wobble-inosine-in-humans-is-disrupted-by-a-millennia-old-mutation-causing-intellectual-disability/</loc><lastmod>2022-06-09T03:16:37+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/time-resolved-nmr-monitoring-of-trna-maturation/</loc><lastmod>2022-06-09T03:16:31+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/identification-of-the-3-amino-3-carboxypropyl-acp-transferase-enzyme-responsible-for-acp3u-formation-at-position-47-in-escherichia-coli-trnas/</loc><lastmod>2022-06-09T03:16:26+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/nail-ms-reveals-the-repair-of-2-methylthiocytidine-by-alkb-in-e-coli/</loc><lastmod>2022-07-21T16:34:34+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/production-and-purification-of-endogenously-modified-trna-derived-small-rnas/</loc><lastmod>2022-06-09T03:16:16+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/broadly-applicable-oligonucleotide-mass-spectrometry-for-the-analysis-of-rna-writers-and-erasers-in-vitro/</loc><lastmod>2022-07-21T16:26:52+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/the-rrna-m6a-methyltransferase-mettl5-is-involved-in-pluripotency-and-developmental-programs/</loc><lastmod>2022-07-21T16:32:10+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/synthesis-of-galactosyl-queuosine-and-distribution-of-hypermodified-q-nucleosides-in-mouse-tissues/</loc><lastmod>2022-07-21T16:25:02+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/synthesis-and-metabolic-fate-of-4-methylthiouridine-in-bacterial-trna/</loc><lastmod>2022-07-21T16:26:03+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/eukaryotic-life-without-tqcug-the-role-of-elongator-dependent-trna-modifications-in-dictyosteliumdiscoideum/</loc><lastmod>2022-06-09T03:15:45+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/identification-and-rescue-of-a-trna-wobble-inosine-deficiency-causing-intellectual-disability-disorder/</loc><lastmod>2022-06-09T03:15:39+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/trna-modifying-enzyme-mutations-induce-codon-specific-mistranslation-and-protein-aggregation-in-yeast/</loc><lastmod>2022-06-09T03:15:31+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/chemical-amination-imination-of-carbonothiolated-nucleosides-during-rna-hydrolysis/</loc><lastmod>2022-07-21T16:03:04+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/cell-culture-nail-ms-allows-insight-into-human-trna-and-rrna-modification-dynamics-in-vivo/</loc><lastmod>2022-07-21T16:06:21+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/quantification-of-modified-nucleosides-in-the-context-of-nail-ms/</loc><lastmod>2022-07-21T16:08:00+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/the-stress-dependent-dynamics-of-s-cerevisiae-trna-and-rrna-modification-profiles/</loc><lastmod>2022-07-21T16:09:40+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/strategies-to-avoid-artifacts-in-mass-spectrometry-based-epitranscriptome-analyses/</loc><lastmod>2022-07-21T16:11:01+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/editorial-viruses-and-epitranscriptomes-regulation-of-infection-and-antiviral-response/</loc><lastmod>2022-07-21T16:12:22+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/analysis-of-the-epitranscriptome-with-ion-pairing-reagent-free-oligonucleotide-mass-spectrometry/</loc><lastmod>2022-07-21T16:19:18+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/m5u54-trna-hypomodification-by-lack-of-trmt2a-drives-the-generation-of-trna-derived-small-rnas/</loc><lastmod>2022-07-21T16:20:24+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/mettl6-is-a-trna-m3c-methyltransferase-that-regulates-pluripotency-and-tumor-cell-growth/</loc><lastmod>2022-07-21T16:31:14+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/sequence-and-structure-specific-cytosine-5-mrna-methylation-by-nsun6/</loc><lastmod>2022-07-21T16:33:22+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/opportunities-and-challenges-to-profile-mrna-modifications-in-escherichia-coli/</loc><lastmod>2022-07-21T16:35:27+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/comprehensive-comparison-between-azacytidine-and-decitabine-treatment-in-an-acute-myeloid-leukemia-cell-line/</loc><lastmod>2022-10-13T14:18:26+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/the-function-of-wtap-in-n6-adenosine-methylation-of-mrnas-controls-t-cell-receptor-signaling-and-survival-of-t-cells/</loc><lastmod>2022-10-13T14:21:12+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/the-spoc-domain-is-a-phosphoserine-binding-module-that-bridges-transcription-machinery-with-co-and-post-transcriptional-regulators/</loc><lastmod>2023-01-31T09:47:03+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/emporal-resolution-of-nail-ms-of-trna-rrna-and-poly-a-rna-is-overcome-by-actinomycin-d/</loc><lastmod>2023-06-29T14:59:45+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/the-plant-cytosolic-m6a-rna-methylome-stabilizes-photosynthesis-in-the-cold/</loc><lastmod>2023-06-29T14:59:53+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/das-mikrobiom-im-wechselspiel-mit-nukleinsaure-modifikationen/</loc><lastmod>2023-06-29T15:02:33+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/different-modification-pathways-for-m1a58-incorporation-in-yeast-elongator-and-initiator-trnas/</loc><lastmod>2023-11-21T19:07:07+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/amyloid-pathology-reduces-elp3-expression-and-trna-modifications-leading-to-impaired-proteostasis/</loc><lastmod>2023-11-21T19:09:16+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/sangivamycin-is-preferentially-incorporated-into-viral-rna-by-the-sars-cov-2-polymerase/</loc><lastmod>2023-11-21T19:10:55+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/pitfalls-in-rna-modification-quantification-using-nucleoside-mass-spectrometry/</loc><lastmod>2023-11-21T19:15:22+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/experience-with-german-research-consortia-in-the-field-of-chemical-biology-of-native-nucleic-acid-modifications/</loc><lastmod>2023-11-21T19:15:07+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/structural-basis-of-trna-recognition-by-the-m3c-rna-methyltransferase-mettl6-in-complex-with-serrs-seryl-trna-synthetase/</loc><lastmod>2024-08-26T14:34:10+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/t4-phage-rna-is-nad-capped-and-alters-the-nad-cap-epitranscriptome-of-escherichia-coli-during-infection-through-a-phage-encoded-decapping-enzyme/</loc><lastmod>2024-04-23T11:44:03+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/temporal-placement-of-rna-modifications-under-5-fluorouracil-treatment-in-human-cell-culture/</loc><lastmod>2025-02-27T14:26:22+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/human-trmt1-and-trmt1l-paralogs-ensure-the-proper-modification-state-stability-and-function-of-trnas/</loc><lastmod>2025-01-13T14:07:44+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/trna-hypomodification-facilitates-5-fluorocytosine-resistance-via-cross-pathway-control-system-activation-in-aspergillus-fumigatus/</loc><lastmod>2025-01-13T14:05:32+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/chemical-reactivity-of-rna-and-its-modifications-with-hydrazine/</loc><lastmod>2025-02-17T19:45:02+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/chemical-nucleases-are-a-robust-alternative-for-rnase-h-cleavage-of-human-ribosomal-rna/</loc><lastmod>2025-02-27T14:25:17+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/direct-rna-sequencing-of-the-escherichia-coli-epitranscriptome-uncovers-alterations-under-heat-stress/</loc><lastmod>2025-03-21T16:52:26+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/quantification-of-objective-concentrations-of-dna-impurities-in-mrna-vaccines/</loc><lastmod>2025-03-24T19:09:05+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/temporal-dynamics-and-metagenomics-of-phosphorothioate-epigenomes-in-the-human-gut-microbiome-2/</loc><lastmod>2025-03-25T15:27:54+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/temporal-and-spatial-profiling-of-alkbh5-activity-through-nail-ms-and-compartmentalized-rna-isolation/</loc><lastmod>2025-08-26T13:20:25+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/nail-ms-elucidates-crucial-trna-u34-modifications-in-response-to-heat-stress-across-eukaryotes-and-prokaryotes/</loc><lastmod>2025-06-04T07:14:18+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/ythdf-proteins-and-m6a-rna-clients-undergo-autophagic-turnover-during-contact-inhibition/</loc><lastmod>2025-09-02T19:20:48+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/unlocking-the-regulatory-code-of-rna-launching-the-human-rnome-project/</loc><lastmod>2025-12-10T13:57:30+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/epitranscriptomic-control-of-stress-adaptations-in-escherichia-coli/</loc><lastmod>2026-02-03T16:50:29+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/detection-of-an-antagonist-bound-to-the-neurokinin-a-receptor-in-styrene-maleic-acid-lipid-particles-by-19f-ultrafast-magic-angle-spinning-nuclear-magnetic-resonance-spectroscopy/</loc><lastmod>2026-04-18T11:17:30+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/alkbh1-activity-in-vitro-and-human-cell-lines-by-isotope-dilution-mass-spectrometry/</loc><lastmod>2026-04-18T11:24:01+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/long-term-stability-of-rna-nucleoside-standards-for-accurate-lc-ms-quantification/</loc><lastmod>2026-07-01T13:00:44+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/short-chain-fatty-acids-activate-the-glutamate-dependent-acid-resistance-system-via-the-trna-modifying-mnm-pathway-in-escherichia-coli/</loc><lastmod>2026-07-01T13:07:18+00:00</lastmod></url><url><loc>https://kaiser-lab.de/publication/a-nanogram-sensitive-workflow-for-oligonucleotide-mass-spectrometry-using-ion-pair-free-nanoflow-hilic-and-rnase-benchmarking/</loc><lastmod>2026-07-01T13:08:06+00:00</lastmod></url></urlset>
