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Bohnsack, Katherine E.
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Preferred name
Bohnsack, Katherine E.
Official Name
Bohnsack, Katherine E.
Alternative Name
Bohnsack, Katherine Elizabeth
Bohnsack, K. E.
Bohnsack, Katherine
Bohnsack, K.
Main Affiliation
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2019Journal Article Overview [["cris.virtual.author-orcid","0000-0001-6035-4255"],["cris.virtual.author-orcid","0000-0001-7063-5456"],["cris.virtual.department","Universitätsmedizin Göttingen"],["cris.virtual.department","Universitätsmedizin Göttingen"],["cris.virtualsource.author-orcid","47ac62af-19cd-4011-895b-a6ab85d91e81"],["cris.virtualsource.author-orcid","145b86b4-d1b9-4744-8517-cdde207804bc"],["cris.virtualsource.department","47ac62af-19cd-4011-895b-a6ab85d91e81"],["cris.virtualsource.department","145b86b4-d1b9-4744-8517-cdde207804bc"],["dc.bibliographiccitation.issue","13"],["dc.bibliographiccitation.journal","The EMBO Journal"],["dc.bibliographiccitation.volume","38"],["dc.contributor.author","Bohnsack, Katherine E."],["dc.contributor.author","Bohnsack, Markus T."],["dc.date.accessioned","2020-12-10T18:42:37Z"],["dc.date.available","2020-12-10T18:42:37Z"],["dc.date.issued","2019"],["dc.description.abstract","The essential cellular process of ribosome biogenesis is at the nexus of various signalling pathways that coordinate protein synthesis with cellular growth and proliferation. The fact that numerous diseases are caused by defects in ribosome assembly underscores the importance of obtaining a detailed understanding of this pathway. Studies in yeast have provided a wealth of information about the fundamental principles of ribosome assembly, and although many features are conserved throughout eukaryotes, the larger size of human (pre-)ribosomes, as well as the evolution of additional regulatory networks that can modulate ribosome assembly and function, have resulted in a more complex assembly pathway in humans. Notably, many ribosome biogenesis factors conserved from yeast appear to have subtly different or additional functions in humans. In addition, recent genome-wide, RNAi-based screens have identified a plethora of novel factors required for human ribosome biogenesis. In this review, we discuss key aspects of human ribosome production, highlighting differences to yeast, links to disease, as well as emerging concepts such as extra-ribosomal functions of ribosomal proteins and ribosome heterogeneity."],["dc.identifier.doi","10.15252/embj.2018100278"],["dc.identifier.pmid","31088842"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/78024"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/70"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P14: Die Rolle humaner Nucleoporine in Biogenese und Export makromolekularer Komplexe"],["dc.relation.workinggroup","RG K. Bohnsack (RNA Metabolism)"],["dc.relation.workinggroup","RG M. Bohnsack (Molecular Biology)"],["dc.rights","CC BY-NC-ND 4.0"],["dc.title","Uncovering the assembly pathway of human ribosomes and its emerging links to disease"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.subtype","overview_ja"],["dc.type.version","published_version"],["dspace.entity.type","Publication"]]Details DOI PMID PMC2022-03-29Journal Article Overview [["dc.bibliographiccitation.journal","Trends in Biochemical Sciences"],["dc.contributor.author","Bohnsack, Katherine E."],["dc.contributor.author","Kleiber, Nicole"],["dc.contributor.author","Lemus-Diaz, Nicolas"],["dc.contributor.author","Bohnsack, Markus T."],["dc.date.accessioned","2022-04-06T07:33:28Z"],["dc.date.available","2022-04-06T07:33:28Z"],["dc.date.issued","2022-03-29"],["dc.description.abstract","Modified nucleotides within cellular RNAs significantly influence their biogenesis, stability, and function. As reviewed here, 3-methylcytidine (m3C) has recently come to the fore through the identification of the methyltransferases responsible for installing m3C32 in human tRNAs. Mechanistic details of how m3C32 methyltransferases recognize their substrate tRNAs have been uncovered and the biogenetic and functional relevance of interconnections between m3C32 and modified adenosines at position 37 highlighted. Functional insights into the role of m3C32 modifications indicate that they influence tRNA structure and, consistently, lack of m3C32 modifications impairs translation. Development of quantitative, transcriptome-wide m3C mapping approaches and the discovery of an m3C demethylase reveal m3C to be dynamic, raising the possibility that it contributes to fine-tuning gene expression in different conditions."],["dc.identifier.doi","10.1016/j.tibs.2022.03.004"],["dc.identifier.pmid","35365384"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/106432"],["dc.identifier.url","https://mbexc.uni-goettingen.de/literature/publications/468"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/174"],["dc.language.iso","en"],["dc.relation","EXC 2067: Multiscale Bioimaging"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P04: Der GET-Rezeptor als ein Eingangstor zum ER und sein Zusammenspiel mit GET bodies"],["dc.relation.issn","0968-0004"],["dc.relation.workinggroup","RG M. Bohnsack (Molecular Biology)"],["dc.relation.workinggroup","RG K. Bohnsack (RNA Metabolism)"],["dc.rights","CC BY-NC-ND 4.0"],["dc.title","Roles and dynamics of 3-methylcytidine in cellular RNAs"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.subtype","overview_ja"],["dc.type.version","published_version"],["dspace.entity.type","Publication"]]Details DOI PMID PMC2020Journal Article Research Paper [["dc.bibliographiccitation.firstpage","8074"],["dc.bibliographiccitation.issue","14"],["dc.bibliographiccitation.journal","Nucleic Acids Research"],["dc.bibliographiccitation.lastpage","8089"],["dc.bibliographiccitation.volume","48"],["dc.contributor.author","Lemus-Diaz, Nicolas"],["dc.contributor.author","Ferreira, Rafael Rinaldi"],["dc.contributor.author","Bohnsack, Katherine E."],["dc.contributor.author","Gruber, Jens"],["dc.contributor.author","Bohnsack, Markus T."],["dc.date.accessioned","2021-04-14T08:24:14Z"],["dc.date.available","2021-04-14T08:24:14Z"],["dc.date.issued","2020"],["dc.identifier.doi","10.1093/nar/gkaa549"],["dc.identifier.pmid","32609813"],["dc.identifier.purl","https://resolver.sub.uni-goettingen.de/purl?gs-1/17489"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/81210"],["dc.identifier.url","https://mbexc.uni-goettingen.de/literature/publications/53"],["dc.identifier.url","https://sfb1190.med.uni-goettingen.de/production/literature/publications/116"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-399"],["dc.notes.intern","Merged from goescholar"],["dc.relation","EXC 2067: Multiscale Bioimaging"],["dc.relation","SFB 1190: Transportmaschinen und Kontaktstellen zellulärer Kompartimente"],["dc.relation","SFB 1190 | P14: Die Rolle humaner Nucleoporine in Biogenese und Export makromolekularer Komplexe"],["dc.relation.eissn","1362-4962"],["dc.relation.issn","0305-1048"],["dc.relation.workinggroup","RG M. Bohnsack (Molecular Biology)"],["dc.relation.workinggroup","RG K. Bohnsack (RNA Metabolism)"],["dc.rights","Goescholar"],["dc.rights.uri","https://goescholar.uni-goettingen.de/licenses"],["dc.title","The human box C/D snoRNA U3 is a miRNA source and miR-U3 regulates expression of sortin nexin 27"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.subtype","original_ja"],["dc.type.version","published_version"],["dspace.entity.type","Publication"]]Details DOI PMID PMC