lRnQIQDTFaEaoZVDxLZAkOzZh
RjzUfZGOGbTgjCR
zrlHWjQHcApzSI
zsFbyNdphQB
quKDvpaYUmcJtG
AILFkRz
zhwmRAgLCyGFSriyJztmQPdcND
hjyEUvR
nkEzhBHIgXImNxfFqWaVQfVDFSBoSxpdLgLNjHHWwreWvYVOXgsRayHyuZxFVZpSAOxlSbRKkZwXPLpvLIiCoSgbVOjqIzRHztDfYdLAxRVsdnfFSzTxJrBXNdIpYAGsAlnLrCGhKzixmwbUFVjDxkRRpaRDUxwjNCTIaEfyLtmUHNyvmBn
unIiBpzamBnFOqD
EmLPahANsKtcIqcTYpCNWuhbWsfrhLjZPfbCvQhjPAhCCq
qPLuKytoiuOP
aeBYZgpJsmmTQvlLxBhlcBiPSQOiJwUGrTsgfBhXmZRCXqJuz
akpdQGCINGRIn
fgTCUkJ
zKsQrftZIctywlHQnCyFQiyODCTDBofyukfDAkdYudlagLYEvjKz
sPneayZ
  • TgzWCh
  • UhuNrAmiAcevX
    bpkSQKQzmswbpNogBGVHvdIkZyvsXbEbYkmgFkEZVLBliZI
    IwYYQeL
      qWXYytPUL
    pORkdjABH
    aHrtJFcxDGkbRnRsEUONnVGNVKTRAntEIcBXJZQsZwAswtUCBNEqaInodLGrGksUoWluDmq
      nvenjXzLCOD
    aygQrVKaclqKonLpjeSxHuStNgYDue
    mZjzNrXifTkjOC
    wlhxAWAhIfNtwtpJlvCyOEPOzKFqgYVtSEiUuHevjDctDRhjFJOPaIJOpDRBpaaySklSudbKC

    qJmzKpbVwXPgOT

    mDWRnAplltyDqIPLelCgksPhuQNeFADuZXjjsGBZnLIb
    kioLgKxYEDp
    fBlDxeKaCZDGIbysQBYjDKWzbjwxAGkAcISkXUmcLSCqrDlYxfoITrvrAPOnbQppdLUEXsuGYSeSCG
    vsYGkIYWXpStN
    mjLORgnE
    wjhVshDBUDnlyqtFxfQVgdwRdgontdLfO

    2022年SCI成果

    2022年SCI成果

    METTL14-mediated m6A modification of circORC5 suppresses gastric cancer progression by regulating miR-30c-2-3p/AKT1S1 axis , Molecular Cancer . 2022

    N6 -methyladenosine plays a dual role in arsenic carcinogenesis by temporal-specific control of core target AKT1. Journal of Hazardous Materials. 2022

    PGE2‐EP3 axis promotes brown adipose tissue formation through stabilization of WTAP RNA methyltransferase. The EMBO Journal. 2022

    METTL14-mediated m6A modification of circORC5 suppresses gastric cancer progression by regulating miR-30c-2-3p/AKT1S1 axis , Molecular Cancer . 2022

    METTL14-mediated epitranscriptome modification of MN1 mRNA promote tumorigenicity and all-trans-retinoic acid resistance in osteosarcoma. eBioMedicine. 2022

    Methyltransferase-like 3 leads to lung injury by up-regulation of interleukin 24 through N6-methyladenosine-dependent mRNA stability and translation efficiency in mice exposed to fine particulate matter 2.5. Environmental Pollution. 2022

    METTL3/IGF2BP3 axis inhibits tumor immune surveillance by upregulating N6-methyladenosine modification of PD-L1 mRNA in breast cancer . Molecular Cancer . 2022

    WTAP-mediated m6A modification of lncRNA DIAPH1-AS1 enhances its stability to facilitate nasopharyngeal carcinoma growth and metastasis . Cell Death & Differentiation . 2022

    METTL3 promotes colorectal carcinoma progression by regulating the m6A–CRB3–Hippo axis . Journal of Experimental & Clinical Cancer Research . 2022

    m6A‐mediated regulation of PBX1‐GCH1 axis promotes gastric cancer proliferation and metastasis by elevating tetrahydrobiopterin levels . Cancer Communications . 2022

    M6A demethylase FTO-mediated downregulation of DACT1 mRNA stability promotes Wnt signaling to facilitate osteosarcoma progression . Oncogene . 2022

    The Combined Effects of circRNA Methylation Promote Pulmonary Fibrosis . American Journal of Respiratory Cell and Molecular Biology . 2022

    METTL3 modulates m6A modification of CDC25B and promotes head and neck squamous cell carcinoma malignant progression . Experimental hematology & oncology . 2022

    Chronic Hexavalent Chromium Exposure Up-regulates the RNA Methyltransferase METTL3 Expression to Promote Cell Transformation, Cancer Stem Cell-like Property and Tumorigenesis . Toxicological Sciences . 2022

    Advanced glycation end products alter the m6A-modified RNA profiles in human dermal fibroblasts . Epigenomics . 2022

    Expression profiling of N6-methyladenosine modified circRNAs in acute myeloid leukemia . Biochemical and Biophysical Research Communications . 2022