检索结果(检索关键词为:ACTIVATION;结果共22条)
  • Xiao, Wei; Li, Juan; Hu, June; Wang, Lingzhi; Huang, Jiang-Rong; Sethi, Gautam; Ma, Zhaowu
    CELL PROLIFERATION 2021年第54卷第12期 DOI:10.1111/cpr.13143
    关键词: FACTOR-KAPPA-B; HEPATOCELLULAR-CARCINOMA; KINASE INHIBITORS; SIGNALING PATHWAY; NONCODING RNAS; BREAST-CANCER; PROMOTES; GROWTH; ACTIVATION; EXPRESSION
    摘要: Circular RNAs (circRNAs), a type of non-coding RNA, are single-stranded circularized molecules characterized by high abundance, evolutionary conservation and cell development- and tissue-specific expression. A large body of studies has found that circRNAs exert a wide variety of functions in diverse biological processes, including cell cycle. The cell cycle is controlled by the coordinated activation and deactivation of cell cycle regulators. CircRNAs exert mutifunctional roles by regulating gene expression via various mechanisms. However, the functional relevance of circRNAs and cell cycle regulation largely remains to be elucidated. Herein, we briefly describe the biogenesis and mechanistic models of circRNAs and summarize their functions and mechanisms in the regulation of critical cell cycle modulators, including cyclins, cyclin-dependent kinases and cyclin-dependent kinase inhibitors. Moreover, we highlight the participation of circRNAs in cell cycle-related signalling pathways and the clinical value of circRNAs as promising biomarkers or therapeutic targets in diseases related to cell cycle disorder.

  • Li, Yu; Wu, Bingbing; An, Chengrui; Jiang, Deming; Gong, Lin; Liu, Yanshan; Liu, Yixiao; Li, Jun; Ouyang, Hongwei; Zou, XiaoHui
    CELL PROLIFERATION 2021年第54卷第7期 DOI:10.1111/cpr.13077
    关键词: ELASTIC FIBER HOMEOSTASIS; EXTRACELLULAR-MATRIX; LYSYL OXIDASE; CANCER; STEM; INFLAMMATION; ACTIVATION; EXPRESSION; MUTATIONS; FIBULIN-5
    摘要: Objective The loss of LOXL1 expression reportedly leads to the prolapse of pelvic organs or to exfoliation syndrome glaucoma. Increasing evidence suggests that LOXL1 deficiency is associated with the pathogenesis of several other diseases. However, the characterization of the systemic functions of LOXL1 is limited by the lack of relevant investigative technologies. Materials and Methods To determine the functions of LOXL1, a novel method for body-wide organ transcriptome profiling, combined with single-cell mass cytometry, was developed. A body-wide organ transcriptomic (BOT) map was created by RNA-Seq of tissues from 17 organs from both Loxl1 knockout (KO) and wild-type mice. Results The BOT results indicated the systemic upregulation of genes encoding proteins associated with the immune response and proliferation processes in multiple tissues of KO mice, and histological and immune staining confirmed the hyperplasia and infiltration of local immune cells in the tissues of KO mice. Furthermore, mass cytometry analysis of peripheral blood samples revealed systemic immune changes in KO mice. These findings were well correlated with results obtained from cancer databases. Patients with tumours had higher Loxl1 mutation frequencies, and patients with Loxl1-mutant tumours showed the upregulation of immune processes and cell proliferation and lower survival rates. Conclusion This study provides an effective strategy for the screening of gene functions in multiple organs and also illustrates the important biological roles of LOXL1 in the cells of multiple organs as well as in systemic immunity.