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  1. N6-methyladenosine modification of circMARK2 enhances cytoplasmic export and stabilizes LIN28B, contributing to the progression of Wilms tumor

    Background

    The potential involvement of circular RNAs (circRNAs) and N 6 -methyladenosine (m 6 A) modification in the progression of Wilms tumor (WT) has...

    Guannan Shu, Zhang Zhao, ... Guochang Liu in Journal of Experimental & Clinical Cancer Research
    Article Open access 11 July 2024
  2. ESRP1-mediated biogenesis of circPTPN12 inhibits hepatocellular carcinoma progression by PDLIM2/ NF-κB pathway

    Background

    Emerging evidence indicates the pivotal involvement of circular RNAs (circRNAs) in cancer initiation and progression. Understanding the...

    Yang Ji, Chuangye Ni, ... Xuehao Wang in Molecular Cancer
    Article Open access 11 July 2024
  3. Mechanical Thrombectomy for Acute Ischemic Stroke: Current State and Future Directions

    Purpose of review

    This review summarizes significant advancements in mechanical thrombectomy (MT) to treat acute ischemic stroke after the pivotal...

    Amol M. Mehta, Shashvat M. Desai, Ashutosh P. Jadhav in Current Treatment Options in Neurology
    Article 11 July 2024
  4. The Retinoblastoma Gene Family in Cell Cycle Regulation and Suppression of Tumorigenesis

    Since its discovery in 1986, as the first tumor suppressor gene, the retinoblastoma gene (Rb) has been extensively studied. Numerous biochemical and...
    Jan-Hermen Dannenberg, Hein P. J. te Riele in Cell Cycle Regulation
    Chapter
  5. Senescence and Cell Cycle Control

    In response to various stresses, such as telomere shortening during continuous proliferation, oxidative stress, DNA damage and aberrant oncogene...
    Hiroaki Kiyokawa in Cell Cycle Regulation
    Chapter
  6. Control of Cell Proliferation and Growth by Myc Proteins

    Myc proteins act as signal transducers that alter cell proliferation in dependence on signals from the extracellular environment. In normal cells,...
    Sandra Bernard, Martin Eilers in Cell Cycle Regulation
    Chapter
  7. Checkpoint and Coordinated Cellular Responses to DNA Damage

    The DNA damage and replication checkpoints are signaling mechanisms that regulate and coordinate cellular responses to genotoxic conditions. The...
    **aohong H. Yang, Lee Zou in Cell Cycle Regulation
    Chapter
  8. Regulation of S Phase

    Regulation of DNA replication is critical for accurate and timely dissemination of genomic material to daughter cells. The cell uses a variety of...
    Jamie K. Teer, Anindya Dutta in Cell Cycle Regulation
    Chapter
  9. Circ_0000069 promotes the development of hepatocellular carcinoma by regulating CCL25

    Background

    Hepatocellular carcinoma (HCC) is a leading cause of cancer-related deaths globally, influenced by aberrant circRNA expression....

    Junshao Zeng, Yi Feng, ... Yifan Sun in BMC Cancer
    Article Open access 11 July 2024
  10. Mouse Models of Cell Cycle Regulators: New Paradigms

    In yeast, a single cyclin-dependent kinase (Cdk) is able to regulate diverse cell cycle transitions (S and M phases) by associating with multiple...
    Eiman Aleem, Philipp Kaldis in Cell Cycle Regulation
    Chapter
  11. G1 Phase: Components, Conundrums, Context

    A eukaryotic cell must coordinate DNA synthesis and chromosomal segregation to generate a faithful replica of itself. These events are confined to...
    Stephanie J. Moeller, Robert J. Sheaff in Cell Cycle Regulation
    Chapter
  12. The ubiquitin-proteasome pathway in cell cycle control

    Ubiquitin-mediated proteolysis is one of the key mechanisms underlying cell cycle control. The removal of barriers posed by accumulation of...
    Steven I. Reed in Cell Cycle Regulation
    Chapter
  13. Protein Kinases Involved in Mitotic Spindle Checkpoint Regulation

    A number of checkpoint controls function to preserve the genome by restraining cell cycle progression until prerequisite events have been properly...
    Ingrid Hoffmann in Cell Cycle Regulation
    Chapter
  14. The RNA helicases DDX19A/B modulate selinexor sensitivity by regulating MCL1 mRNA nuclear export in leukemia cells

    Selinexor, a first-in-class exportin1 (XPO1) inhibitor, is an attractive anti-tumor agent because of its unique mechanisms of action; however, its...

    Tatsuya Terasaki, Yuichiro Semba, ... Takahiro Maeda in Leukemia
    Article 11 July 2024
  15. Combination of dual JAK/HDAC inhibitor with regorafenib synergistically reduces tumor growth, metastasis, and regorafenib-induced toxicity in colorectal cancer

    Background

    Treatment with regorafenib, a multiple-kinase inhibitor, to manage metastatic colorectal cancers (mCRCs) shows a modest improvement in...

    Prachi Bajpai, Sumit Agarwal, ... Upender Manne in Journal of Experimental & Clinical Cancer Research
    Article Open access 11 July 2024
  16. Enhancing cancer therapy: the integration of oncolytic virus therapy with diverse treatments

    As one of the significant challenges to human health, cancer has long been a focal point in medical treatment. With ongoing advancements in the field...

    Zhuo Yan, Zhengbo Zhang, ... Zhangquan Wang in Cancer Cell International
    Article Open access 11 July 2024
  17. Anti-TIM3 chimeric antigen receptor-natural killer cells preferentially target primitive acute myeloid leukemia cells with minimal fratricide and exhaustion

    Acute myeloid leukemia (AML) is an aggressive and genetically heterogeneous disease with poor clinical outcomes. Refractory AML is common, and...

    Phatchanat Klaihmon, Parinya Samart, ... Sudjit Luanpitpong in Experimental Hematology & Oncology
    Article Open access 11 July 2024
  18. The Centrosome Cycle

    Centrosomes are dynamic organelles involved in many aspects of cell function and growth. Centrosomes act as microtubule organizing centers, and...
    Christopher P. Mattison, Mark Winey in Cell Cycle Regulation
    Chapter
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