For: | Colleti C, Melo-Hanchuk TD, da Silva FRM, Saito Â, Kobarg J. Complex interactomes and post-translational modifications of the regulatory proteins HABP4 and SERBP1 suggest pleiotropic cellular functions. World J Biol Chem 2019; 10(3): 44-64 [PMID: PMC6872977 DOI: 10.4331/wjbc.v10.i3.44] |
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URL: | https://www.wjgnet.com/1949-8454/full/v10/i3/44.htm |
Number | Citing Articles |
1 |
Antoine Baudin, Xiaoping Xu, David S. Libich. The 1H, 15N and 13C resonance assignments of the C-terminal domain of Serpine mRNA binding protein 1 (SERBP1). Biomolecular NMR Assignments 2021; 15(2): 461 doi: 10.1007/s12104-021-10046-3
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2 |
Talita Diniz Melo-Hanchuk, Carolina Colleti, Ângela Saito, Maria Carolina Santos Mendes, José Barreto Campello Carvalheira, Jose Vassallo, Jörg Kobarg. Intracellular hyaluronic acid-binding protein 4 (HABP4): a candidate tumor suppressor in colorectal cancer. Oncotarget 2020; 11(46): 4325 doi: 10.18632/oncotarget.27804
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3 |
Christian Barbato, Paola Frisone, Laura Braccini, Simona D’Aguanno, Luisa Pieroni, Maria Teresa Ciotti, Caterina Catalanotto, Carlo Cogoni, Francesca Ruberti. Silencing of Ago-2 Interacting Protein SERBP1 Relieves KCC2 Repression by miR-92 in Neurons. Cells 2022; 11(6): 1052 doi: 10.3390/cells11061052
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4 |
Fengli Wang, Lingjuan Wang, Shiming Gan, Shenglei Feng, Sijin Ouyang, Xiaoli Wang, Shuiqiao Yuan. SERBP1 Promotes Stress Granule Clearance by Regulating 26S Proteasome Activity and G3BP1 Ubiquitination and Protects Male Germ Cells from Thermostimuli Damage. Research 2023; 6 doi: 10.34133/research.0091
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5 |
Pranjali Bhandare, Ashwin Narain, Julia Hofstetter, Teresa Rummel, Julia Wenzel, Christina Schülein-Völk, Stephanie Lamer, Ursula Eilers, Andreas Schlosser, Martin Eilers, Florian Erhard, Elmar Wolf. Phenotypic screens identify SCAF1 as critical activator of RNAPII elongation and global transcription. Nucleic Acids Research 2024; doi: 10.1093/nar/gkae1219
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6 |
Yujie Liu, Xing Hu, Liang Hu, Changjing Xu, Xuemei Liang. Let-7i-5p enhances cell proliferation, migration and invasion of ccRCC by targeting HABP4. BMC Urology 2021; 21(1) doi: 10.1186/s12894-021-00820-9
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7 |
Maria Izabel de Barros Frazão Salmazo, João Carlos Cardoso Alonso, Gabriela Cardoso de Arruda Camargo, Gabriela de Oliveira, André da Silva Santos, Monaliza Ávila, Isadora Manzato Roberto, Leandro Luiz Lopes de Freitas, Martim Corrêa Bottene, Jean Felipe Prodocimo Lestingi, Paulo Henrique Ferreira Caria, Nelson Durán, Jörg Kobarg, Wagner José Fávaro. Clinical and immunohistochemical effects of OncoTherad (MRB-CFI-1) nanoimmunotherapy on SERBP1, HABP4, CD44 and Ki-67 in BCG-unresponsive non-muscle invasive bladder cancer. Tissue and Cell 2025; 93: 102783 doi: 10.1016/j.tice.2025.102783
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8 |
Taofang Hao, Yuanyuan Li, Qianyao Ren, Ying Zeng, Leyi Gao, Wenbo Zhu, Jiankai Liang, Yuan Lin, Jun Hu, Guangmei Yan, Shuxin Sun, Jing Cai. circ-1584 selectively promotes the antitumor activity of the oncolytic virus M1 on pancreatic cancer. Molecular Therapy: Oncology 2025; 33(1): 200919 doi: 10.1016/j.omton.2024.200919
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9 |
Andrea Bleckmann, Nicole Spitzlberger, Philipp Denninger, Hans F. Ehrnsberger, Lele Wang, Astrid Bruckmann, Stefan Reich, Philipp Holzinger, Jan Medenbach, Klaus D. Grasser, Thomas Dresselhaus. Cytosolic RGG RNA-binding proteins are temperature sensitive flowering time regulators in Arabidopsis
. Biological Chemistry 2023; 404(11-12): 1069 doi: 10.1515/hsz-2023-0171
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10 |
Ning Cui, Xiaoxia Han, Xiao Yang, Xiaoran Zhao, Qinghua Huang, Chuantian Xu, Shuai Su. Avian leukosis virus usurps the cellular SERBP1 protein to enhance its transcription and promote productive infections in avian cells. Poultry Science 2024; 103(6): 103755 doi: 10.1016/j.psj.2024.103755
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