1. Capsid-Targeted Viral Inactivation: A Novel Tactic for Inhibiting Replication in Viral Infections
    Xingcui Zhang et al, 2016, Viruses CrossRef
  2. The Tudor Staphylococcal Nuclease Protein of Entamoeba histolytica Participates in Transcription Regulation and Stress Response
    Javier Cázares-Apátiga et al, 2017, Front. Cell. Infect. Microbiol. CrossRef
  3. Tudor-SN Regulates Milk Synthesis and Proliferation of Bovine Mammary Epithelial Cells
    Jinxia Ao et al, 2015, IJMS CrossRef
  4. The microRNA effector RNA-induced silencing complex in hidradenitis suppurativa: a significant dysregulation within active inflammatory lesions
    S. Hessam et al, 2017, Arch Dermatol Res CrossRef
  5. SND1 overexpression deregulates cholesterol homeostasis in hepatocellular carcinoma
    Hiart Navarro-Imaz et al, 2016, Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids CrossRef
  6. UPF1 helicase promotes TSN-mediated miRNA decay
    Reyad A. Elbarbary et al, 2017, Genes Dev. CrossRef
  7. Rapid and Sensitive Detection of Breast Cancer Cells in Patient Blood with Nuclease-Activated Probe Technology
    Sven Kruspe et al, 2017, Molecular Therapy - Nucleic Acids CrossRef
  8. Aggregation of SND1 in Stress Granules is Associated with the Microtubule Cytoskeleton During Heat Shock Stimulus
    Jie Shao et al, 2017, Anat. Rec. CrossRef
  9. p100 functions as a metastasis activator and is targeted by tumor suppressing microRNA-320a in lung cancer
    Aimin Xing et al, 2017, Thorac Cancer CrossRef
  10. Inflammation activates the CXCL16 pathway to contribute to tubulointerstitial injury in diabetic nephropathy
    Ze-bo Hu et al, 2018, Acta Pharmacol Sin CrossRef
  11. SND p102 promotes extracellular matrix accumulation and cell proliferation in rat glomerular mesangial cells via the AT1R/ERK/Smad3 pathway
    Jin-lan Xu et al, 2018, Acta Pharmacol Sin CrossRef
  12. SND1 acts as an anti-apoptotic factor via regulating the expression of lncRNA UCA1 in hepatocellular carcinoma
    Xiaoteng Cui et al, 2018, RNA Biology CrossRef
  13. Insights Into SND1 Oncogene Promoter Regulation
    Begoña Ochoa et al, 2018, Front. Oncol. CrossRef
  14. Challenges in the clinical interpretation of small de novo copy number variants in neurodevelopmental disorders
    Pamela Magini et al, 2019, Gene CrossRef
  15. Analysis of the Antiproliferative Effect of Ankaferd Hemostat on Caco-2 Colon Cancer Cells via LC/MS Shotgun Proteomics Approach
    Engin Koçak et al, 2019, BioMed Research International CrossRef
  16. Posttranscriptional Inhibition of Protein Tyrosine Phosphatase Nonreceptor Type 23 by Staphylococcal Nuclease and Tudor Domain Containing 1: Implications for Hepatocellular Carcinoma
    Nidhi Jariwala et al, 2019, Hepatol Commun CrossRef
  17. Proteome‐based classification of Nonmuscle Invasive Bladder Cancer
    Rafael Stroggilos et al, 2019, Int. J. Cancer CrossRef
  18. Identification of molecular signatures and pathways to identify novel therapeutic targets in Alzheimer's disease: Insights from a systems biomedicine perspective
    Md. Rezanur Rahman et al, 2019, Genomics CrossRef
  19. Staphylococcal Nuclease and Tudor Domain Containing 1 (SND1 Protein) Promotes Hepatocarcinogenesis by Inhibiting Monoglyceride Lipase (MGLL)
    Devaraja Rajasekaran et al, 2016, J. Biol. Chem. CrossRef
  20. Tudor-SN–mediated endonucleolytic decay of human cell microRNAs promotes G1/S phase transition
    Reyad A. Elbarbary et al, 2017, Science CrossRef
  21. The Tudor SND1 protein is an m6A RNA reader essential for replication of Kaposi’s sarcoma-associated herpesvirus
    Belinda Baquero-Perez et al, 2019 CrossRef
  22. Identification of hemicatenane-specific binding proteins by fractionation of HeLa nuclei extracts
    Oumayma Rouis et al, 2020 CrossRef
  23. The Lipolysome—A Highly Complex and Dynamic Protein Network Orchestrating Cytoplasmic Triacylglycerol Degradation
    Peter Hofer et al, 2020, Metabolites CrossRef
  24. Combined HAT/EZH2 modulation leads to cancer-selective cell death
    Francesca Petraglia et al, 2018, Oncotarget CrossRef
  25. miR-320a functions as a suppressor for gliomas by targeting SND1 and β-catenin, and predicts the prognosis of patients.
    Huining Li et al, 0 CrossRef
  26. Characterization of urinary extracellular vesicle proteins in muscle-invasive bladder cancer
    Christopher R. Silvers et al, 2017, Oncotarget CrossRef
  27. MiR-361-5p inhibits colorectal and gastric cancer growth and metastasis by targeting staphylococcal nuclease domain containing-1
    Fei Ma et al, 2015, Oncotarget CrossRef
  28. Oncoprotein SND1 hijacks nascent MHC-I heavy chain to ER-associated degradation, leading to impaired CD8+ T cell response in tumor
    Yuan Wang et al, 2020, Sci. Adv. CrossRef
  29. A pan-cancer analysis of the oncogenic role of staphylococcal nuclease domain-containing protein 1 (SND1) in human tumors.
    Xiaoteng Cui et al, 2020, Genomics CrossRef
  30. Mammary transcriptome reveals cell maintenance and protein turnover support milk synthesis in early-lactation cows
    L. Beckett et al, 2020, Physiological Genomics CrossRef
  31. Oncogenic Role of SND1 in Development and Progression of Hepatocellular Carcinoma.
    Nidhi Jariwala et al, 2017, Cancer Res CrossRef
  32. Disruption of SND1–MTDH Interaction by a High Affinity Peptide Results in SND1 Degradation and Cytotoxicity to Breast Cancer Cells In Vitro and In Vivo
    Peng Li et al, 2021, Mol Cancer Ther CrossRef
  33. Discovery and Proof-of-Concept Study of Nuclease Activity as a Novel Biomarker for Breast Cancer Tumors
    Luiza I. Hernandez et al, 2021, Cancers CrossRef
  34. Combination of HGF/MET-targeting agents and other therapeutic strategies in cancer
    Fatemeh Moosavi et al, 2021, Critical Reviews in Oncology/Hematology CrossRef
  35. The Tudor Domain-Containing Protein BbTdp1 Contributes to Fungal Cell Development, the Cell Cycle, Virulence, and Transcriptional Regulation in the Insect Pathogenic Fungus Beauveria bassiana
    Lei Qiu et al, 2021, Microbiol Spectr CrossRef
  36. Small-molecule inhibitors that disrupt the MTDH–SND1 complex suppress breast cancer progression and metastasis
    Minhong Shen et al, 2021, Nat Cancer CrossRef
  37. Pharmacological disruption of the MTDH–SND1 complex enhances tumor antigen presentation and synergizes with anti-PD-1 therapy in metastatic breast cancer
    Minhong Shen et al, 2021, Nat Cancer CrossRef
  38. Breaking up MTDH–SND1 to break down metastasis
    Qingwen Jiang et al, 2022, Nat Cancer CrossRef
  39. null
    Muhammad T. Abdel Ghafar et al, 2022 CrossRef
  40. Genetic variants associated mRNA stability in lung
    Jian-Rong Li et al, 2022, BMC Genomics CrossRef
  41. Ultrasensitive Ribo-seq reveals translational landscapes during mammalian oocyte-to-embryo transition and pre-implantation development
    Zhuqing Xiong et al, 2022, Nat Cell Biol CrossRef
  42. Structure-Based Design, Optimization, and Evaluation of Potent Stabilized Peptide Inhibitors Disrupting MTDH and SND1 Interaction
    Hailing Chen et al, 2022, J. Med. Chem. CrossRef
  43. N-Glycosylation on Asn50 of SND1 Is Required for Glioma U87 Cell Proliferation and Metastasis
    Ying Zhou et al, 2022, Journal of Immunology Research CrossRef
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    Yuqi Fan et al, 2022 CrossRef
  45. Bidirectional Functional Effects of Staphylococcus on Carcinogenesis
    Yuannan Wei et al, 2022, Microorganisms CrossRef
  46. Improved β-cell function leads to improved glucose tolerance in a transgenic mouse expressing lipoprotein lipase in adipocytes
    Hasiyet Memetimin et al, 2022, Sci Rep CrossRef
  47. Inhibition of SND1 overcomes chemoresistance in bladder cancer cells by promoting ferroptosis
    Yu Zhao et al, 2022, Oncol Rep CrossRef
  48. The RNA ‐binding protein Snd1/ Tudor‐SN regulates hypoxia‐responsive gene expression
    Juha Saarikettu et al, 2023, FASEB BioAdvances CrossRef
  49. SND1 binds to ERG and promotes tumor growth in genetic mouse models of prostate cancer
    Sheng-You Liao et al, 2023, Nat Commun CrossRef
  50. Loss of the methylarginine reader function of SND1 confers resistance to hepatocellular carcinoma
    Tanner Wright et al, 2023 CrossRef
  51. Bioinformatic analysis reveals an association between Metadherin with breast cancer prognosis and tumor immune infiltration
    Lixian Yang et al, 2024, Sci Rep CrossRef