{"database":"GEO","file_versions":[{"headers":{"Content-Type":["application/json"]},"body":{"files":{"Other":["ftp://ftp.ncbi.nlm.nih.gov/geo/series/GSE341nnn/GSE341562/"]},"type":"primary"},"statusCode":"OK","statusCodeValue":200}],"scores":null,"additional":{"omics_type":["Other"],"species":["Homo sapiens"],"gds_type":["Other"],"full_dataset_link":["https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE341562"],"repository":["GEO"],"entry_type":["GSE"],"additional_accession":[]},"is_claimable":false,"name":"Site-Specific Inhibition of Translation Initiation via 2'-O-methylation","description":"Translation initiation involves a concerted set of intermolecular interactions that efficiently recognize optimal AUG start codons. However, translation initiation complexes often start at upstream non-optimal AUGs or near-cognate codons, leading to the expression of upstream Open Reading Frames (uORFs). Using retrospective analyses of translation preinitiation cryo-EM structures, we identified putative hydrogen bonds between the 2'-OH groups of mRNA start codons with 18S rRNA. Disruption of these interactions using a chemical modification of mRNA, 2'-O-methylation (Nm), repressed translation initiation by preventing the preinitiation complex from recognizing start codons. Notably, 2'-O-methylation in upstream AUG and near-cognate codons inhibits upstream translation initiation while enhancing the expression of canonical ORFs. These findings revealed a transcript- and site-specific inhibitory role for 2'-O-methylation in translation initiation, providing novel insights into the mechanisms of start codon selection in human transcriptomes.","dates":{"publication":"2026/08/05"},"accession":"GSE341562","cross_references":{"GSM":["GSM9911062","GSM9911061"],"GPL":["34284"],"GSE":["341562"],"taxon":["Homo sapiens"]}}