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Title
Targeting SUMOylation in cancer
Authors
Keywords
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Journal
CURRENT OPINION IN ONCOLOGY
Volume 33, Issue 5, Pages 520-525
Publisher
Ovid Technologies (Wolters Kluwer Health)
Online
2021-07-20
DOI
10.1097/cco.0000000000000765
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Note: Only part of the references are listed.- Ginkgoic acid impedes gastric cancer cell proliferation, migration and EMT through inhibiting the SUMOylation of IGF-1R
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- SUMO-Activating Enzyme Subunit 1 (SAE1) Is a Promising Diagnostic Cancer Metabolism Biomarker of Hepatocellular Carcinoma
- (2021) Jiann Ruey Ong et al. Cells
- Discovery of TAK-981, a First-in-Class Inhibitor of SUMO-Activating Enzyme for the Treatment of Cancer
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- Ginkgolic Acids Confer Potential Anticancer Effects by Targeting Pro-Inflammatory and Oncogenic Signaling Molecules
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- Duck PIAS2 negatively regulates RIG-I mediated IFN-β production by interacting with IRF7
- (2020) Shaopo Zu et al. DEVELOPMENTAL AND COMPARATIVE IMMUNOLOGY
- SUMO pathway inhibition targets an aggressive pancreatic cancer subtype
- (2020) Alexander Biederstädt et al. GUT
- SENP3 Suppresses Osteoclastogenesis by De-conjugating SUMO2/3 from IRF8 in Bone Marrow-Derived Monocytes
- (2020) Yongxing Zhang et al. Cell Reports
- Ubiquitin and SUMO conjugation as biomarkers of acute myeloid leukemias response to chemotherapies
- (2020) Pierre Gâtel et al. Life Science Alliance
- SUMO E3 ligase CBX4 regulates hTERT-mediated transcription of CDH1 and promotes breast cancer cell migration and invasion
- (2020) Sulagna Sanyal et al. BIOCHEMICAL JOURNAL
- SUMOylation of E2F1 Regulates Expression of EZH2
- (2020) Li Du et al. CANCER RESEARCH
- Constitutively active androgen receptor supports the metastatic phenotype of endocrine-resistant hormone receptor-positive breast cancer
- (2020) Shaymaa Bahnassy et al. Cell Communication and Signaling
- Lack of NFATc1 SUMOylation prevents autoimmunity and alloreactivity
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- UBC9 coordinates inflammation affecting development of bladder cancer
- (2020) Xiaoliang Huang et al. Scientific Reports
- SENP2 suppresses NF-κB activation and sensitizes breast cancer cells to doxorubicin
- (2019) Xiaoyu Gao et al. EUROPEAN JOURNAL OF PHARMACOLOGY
- Saikosaponin-d Inhibits the Hepatoma Cells and Enhances Chemosensitivity Through SENP5-Dependent Inhibition of Gli1 SUMOylation Under Hypoxia
- (2019) Chun-Yan Zhang et al. Frontiers in Pharmacology
- Ubc9 Interacts with and SUMOylates the TCR Adaptor SLP-76 for NFAT Transcription in T Cells
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- SUMO1 SUMOylates and SENP3 deSUMOylates NLRP3 to orchestrate the inflammasome activation
- (2019) Luyao Shao et al. FASEB JOURNAL
- Targeting the SUMO Pathway Primes All-transRetinoic Acid–Induced Differentiation of Nonpromyelocytic Acute Myeloid Leukemias
- (2018) Hayeon Baik et al. CANCER RESEARCH
- SUMO-specific proteases and isopeptidases of the SENP family at a glance
- (2018) Kathrin Kunz et al. JOURNAL OF CELL SCIENCE
- Small-Molecule Inhibitors Targeting Protein SUMOylation as Novel Anticancer Compounds
- (2018) Yanfang Yang et al. MOLECULAR PHARMACOLOGY
- Regulation of miR-34b/c-targeted gene expression program by SUMOylation
- (2018) Yi-Jia Li et al. NUCLEIC ACIDS RESEARCH
- Epithelial-to-mesenchymal transition in cancer: complexity and opportunities
- (2018) Yun Zhang et al. Frontiers of Medicine
- Probing the roles of SUMOylation in cancer cell biology by using a selective SAE inhibitor
- (2017) Xingyue He et al. Nature Chemical Biology
- A comprehensive compilation of SUMO proteomics
- (2016) Ivo A. Hendriks et al. NATURE REVIEWS MOLECULAR CELL BIOLOGY
- Role of SUMO activating enzyme in cancer stem cell maintenance and self-renewal
- (2016) Li Du et al. Nature Communications
- PIAS1 Promotes Lymphomagenesis through MYC Upregulation
- (2016) Andrea Rabellino et al. Cell Reports
- Sumoylation coordinates the repression of inflammatory and anti-viral gene-expression programs during innate sensing
- (2015) Adrien Decque et al. NATURE IMMUNOLOGY
- SUMOylation of Myc-Family Proteins
- (2014) Arianna Sabò et al. PLoS One
- Sumoylation: A Regulatory Protein Modification in Health and Disease
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- EZH2 supports nasopharyngeal carcinoma cell aggressiveness by forming a co-repressor complex with HDAC1/HDAC2 and Snail to inhibit E-cadherin
- (2011) Z-T Tong et al. ONCOGENE
- A SUMOylation-Dependent Transcriptional Subprogram Is Required for Myc-Driven Tumorigenesis
- (2011) J. D. Kessler et al. SCIENCE
- The sumoylation pathway is dysregulated in multiple myeloma and is associated with adverse patient outcome
- (2009) J. J. Driscoll et al. BLOOD
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