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共2篇 平均IF=5.95 (4.4-7.5)更多分析
  • 1区Q1影响因子: 7.5
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    1. Protein glycosylation.
    作者:Eichler Jerry
    期刊:Current biology : CB
    日期:2019-04-01
    DOI :10.1016/j.cub.2019.01.003
    Eichler introduces the diversity of protein glycosylations and the roles of these modifications in regulating protein function.
  • 3区Q2影响因子: 4.4
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    2. -GlcNAcylation: An Emerging Protein Modification Regulating the Hippo Pathway.
    期刊:Cancers
    日期:2022-06-18
    DOI :10.3390/cancers14123013
    The balance between cellular proliferation and apoptosis and the regulation of cell differentiation must be established to maintain tissue homeostasis. These cellular responses involve the kinase cascade-mediated Hippo pathway as a crucial regulator. Hence, Hippo pathway dysregulation is implicated in diverse diseases, including cancer. -GlcNAcylation is a non-canonical glycosylation that affects multiple signaling pathways through its interplay with phosphorylation in the nucleus and cytoplasm. An abnormal increase in the -GlcNAcylation levels in various cancer cells is a potent factor in Hippo pathway dysregulation. Intriguingly, Hippo pathway dysregulation also disrupts -GlcNAc homeostasis, leading to a persistent elevation of -GlcNAcylation levels, which is potentially pathogenic in several diseases. Therefore, -GlcNAcylation is gaining attention as a protein modification that regulates the Hippo pathway. This review presents a framework on how -GlcNAcylation regulates the Hippo pathway and forms a self-perpetuating cycle with it. The pathological significance of this self-perpetuating cycle and clinical strategies for targeting -GlcNAcylation that causes Hippo pathway dysregulation are also discussed.
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