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Specific Regulation of m^(6)A by SRSF7 Promotes the Progression of Glioblastoma 被引量:3

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摘要 Serine/arginine-rich splicing factor 7(SRSF7),a known splicing factor,has been revealed to play oncogenic roles in multiple cancers.However,the mechanisms underlying its oncogenic roles have not been well addressed.Here,based on N6-methyladenosine(m^(6)A)co-methylation network analysis across diverse cell lines,we find that the gene expression of SRSF7 is positively correlated with glioblastoma(GBM)cell-specific m^(6)A methylation.We then indicate that SRSF7 is a novel m^(6)A regulator,which specifically facilitates the m^(6)A methylation near its binding sites on the mRNAs involved in cell proliferation and migration,through recruiting the methyltransferase complex.Moreover,SRSF7 promotes the proliferation and migration of GBM cells largely dependent on the presence of the m^(6)A methyltransferase.The two m^(6)A sites on the mRNA for PDZ-binding kinase(PBK)are regulated by SRSF7 and partially mediate the effects of SRSF7 in GBM cells through recognition by insulin-like growth factor 2 mRNA-binding protein 2(IGF2BP2).Together,our discovery reveals a novel role of SRSF7 in regulating m^(6)A and validates the presence and functional importance of temporal-and spatial-specific regulation of m^(6)A mediated by RNA-binding proteins(RBPs).
出处 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2023年第4期707-728,共22页 基因组蛋白质组与生物信息学报(英文版)
基金 supported by the National Key R&D Program of China(Grant No.2018YFA0107200)to JW the National Natural Science Foundation of China(Grant Nos.81830082,82030078,and 81621004 to JL Grant Nos.31771446 and 31970594 to JW Grant No.32100452 to XS).
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  • 1Zhang Zhang,Shuhui Song,Jun Yu,Wenming Zhao,Jingfa Xiao,Yiming Bao.The Elements of Data Sharing[J].Genomics, Proteomics & Bioinformatics,2020,18(1):1-4. 被引量:3
  • 2Cantara WA, Crain PF, Rozenski J, McCloskey JA, Harris KA, Zhang X, et al. The RNA modification database, RNAMDB: 2011 update. Nucleic Acids Res 2011;39:D195-201.
  • 3Czerwoniec A, Dunin-Horkawicz S, Purta E, Kaminska KH, Kasprzak JM, Bujnicki JM, et al. MODOMICS: a database of RNA modification pathways 2008 update. Nucleic Acids Res 2009;37:D118-21.
  • 4Narayan P, Rottman FM. Methylation of mRNA. Adv Enzymol Relat Areas Mol Biol 1992;65:255-85.
  • 5Dubin DT, Taylor RH. The methylation state of poly A-containing messenger RNA from cultured hamster cells. Nucleic Acids Res 1975;2:1653-68.
  • 6Kennedy TD, Lane BG. Wheat embryo ribonucleates. XIII. Methyl-substituted nucleoside constituents and 5'-terminal dinucleotide sequences in bulk poly(AR)-rich RNA from imbibing wheat embryos. Can J Biochem 1979;57:927-31.
  • 7Haugland RA, Cline MG. Post-transcriptional modifications of oat coleoptile ribonucleic acids. 5'-Terminal capping and methylation of internal nucleosides in poly(A)-rich RNA. Eur J Biochem 1980;104:271-7.
  • 8Zhong S, Li H, Bodi Z, Button J, Vespa L, Herzog M, et al. MTA is an Arabidopsis messenger RNA adenosine methylase and interacts with a homolog of a sex-specific splicing factor. Plant Cell 2008;20:1278-88.
  • 9Adams JM, Cory S. Modified nucleosides and bizarre 5'-termini in mouse myeloma mRNA. Nature 1975;255:28-33.
  • 10Desrosiers RC, Friderici KH, Rottman FM. Characterization of Novikoff hepatoma mRNA methylation and heterogeneity in the methylated 5' terminus. Biochemistry 1975;14:4367-74.

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