1. A literature Review: The genomic landscape of spinal chondrosarcoma and potential diagnostic, prognostic & therapeutic implications
    Mohmmed Elmajee et al, 2022, Interdisciplinary Neurosurgery CrossRef
  2. Interplay among p21Waf1/Cip1, MUSASHI-1 and Krüppel-like factor 4 in activation of Bmi1-CreER reserve intestinal stem cells after gamma radiation-induced injury
    Emilia J. Orzechowska et al, 2020, Scientific Reports CrossRef
  3. Nerves in gastrointestinal cancer: from mechanism to modulations
    Nathalie Vaes et al, 2022, Nature Reviews Gastroenterology & Hepatology CrossRef
  4. miR-761 inhibits tumor progression by targeting MSI1 in ovarian carcinoma
    Can Shi et al, 2016, Tumor Biology CrossRef
  5. Musashi1 Contribution to Glioblastoma Development via Regulation of a Network of DNA Replication, Cell Cycle and Division Genes
    Mirella Baroni et al, 2021, Cancers CrossRef
  6. Musashi–1—A Stemness RBP for Cancer Therapy?
    Nadine Bley et al, 2021, Biology CrossRef
  7. DCLK1 and its interaction partners: An effective therapeutic target for colorectal cancer (Review)
    Muthu Vijai et al, 2021, Oncology Letters CrossRef
  8. Treatment with decitabine induces the expression of stemness markers, PD-L1 and NY-ESO-1 in colorectal cancer: potential for combined chemoimmunotherapy
    Nassiba Taib et al, 2023, Journal of Translational Medicine CrossRef
  9. The oncogenic and tumor suppressive roles of RNA‐binding proteins in human cancers
    Amirreza Bitaraf et al, 2021, Journal of Cellular Physiology CrossRef
  10. Distinct but interchangeable subpopulations of colorectal cancer cells with different growth fates and drug sensitivity
    Roberto Coppo et al, 2023, iScience CrossRef
  11. DBC2/RhoBTB2 functions as a tumor suppressor protein via Musashi-2 ubiquitination in breast cancer
    Y M Choi et al, 2017, Oncogene CrossRef
  12. Development and Validation of a Prognostic Model of RNA-Binding Proteins in Colon Adenocarcinoma: A Study Based on TCGA and GEO Databases
    Dandan Zhu et al, 2021, Cancer Management and Research CrossRef
  13. The Induction of Selected Wnt Target Genes by Tcf1 Mediates Generation of Tumorigenic Colon Stem Cells
    Daisuke Shiokawa et al, 2017, Cell Reports CrossRef
  14. Structural Insight into the Recognition of r(UAG) by Musashi-1 RBD2, and Construction of a Model of Musashi-1 RBD1-2 Bound to the Minimum Target RNA
    Ryo Iwaoka et al, 2017, Molecules CrossRef
  15. Immunohistochemical expression of stem cell marker Musashi-1 in colorectal carcinoma and its correlation with various pathologic parameters
    Nahed S. Khamis et al, 2018, Egyptian Journal of Pathology CrossRef
  16. The effects of a mixture of Lactobacillus species on colorectal tumor cells activity through modulation of Hes1 pathway
    Roya Ghanavati et al, 2020, PharmaNutrition CrossRef
  17. Exosomal circ_IFT80 Enhances Tumorigenesis and Suppresses Radiosensitivity in Colorectal Cancer by Regulating miR-296-5p/MSI1 Axis
    Liang Li et al, 2021, Cancer Management and Research CrossRef
  18. Expression profile of RNA binding protein in cervical cancer using bioinformatics approach
    Zhiyuan Huang et al, 2021, Cancer Cell International CrossRef
  19. Post-transcriptional Regulation of Colorectal Cancer: A Focus on RNA-Binding Proteins
    Jennyfer M. García-Cárdenas et al, 2019, Frontiers in Molecular Biosciences CrossRef
  20. Musashi RNA-Binding Proteins as Cancer Drivers and Novel Therapeutic Targets
    Alexander E. Kudinov et al, 2017, Clinical Cancer Research CrossRef
  21. The RNA-Binding Protein Musashi1 Regulates a Network of Cell Cycle Genes in Group 4 Medulloblastoma
    Mirella Baroni et al, 2021, Cells CrossRef
  22. Mechanism of protein–RNA recognition: analysis based on the statistical mechanics of hydration
    Tomohiko Hayashi et al, 2018, Physical Chemistry Chemical Physics CrossRef
  23. Circ_KIAA1199 inhibits MSI1 degradation by targeting miR-34c-5p to drive the malignant cell behaviors and tumor growth of colorectal cancer
    Yanbo Zhang et al, 2022, Anti-Cancer Drugs CrossRef