Artículos de revistas sobre el tema "STUB1"
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Ullah, Kifayat, Suping Chen, Jiaqi Lu, Xiaohui Wang, Qing Liu, Yang Zhang, Yaqiu Long, Zhanhong Hu y Guoqiang Xu. "The E3 ubiquitin ligase STUB1 attenuates cell senescence by promoting the ubiquitination and degradation of the core circadian regulator BMAL1". Journal of Biological Chemistry 295, n.º 14 (10 de febrero de 2020): 4696–708. http://dx.doi.org/10.1074/jbc.ra119.011280.
Texto completoChen, Dong-Hui, Caitlin Latimer, Mayumi Yagi, Mesaki Kenneth Ndugga-Kabuye, Elyana Heigham, Suman Jayadev, James S. Meabon et al. "Heterozygous STUB1 missense variants cause ataxia, cognitive decline, and STUB1 mislocalization". Neurology Genetics 6, n.º 2 (20 de febrero de 2020): e397. http://dx.doi.org/10.1212/nxg.0000000000000397.
Texto completoPakdaman, Yasaman, Siren Berland, Helene J. Bustad, Sigrid Erdal, Bryony A. Thompson, Paul A. James, Kjersti N. Power et al. "Genetic Dominant Variants in STUB1, Segregating in Families with SCA48, Display In Vitro Functional Impairments Indistinctive from Recessive Variants Associated with SCAR16". International Journal of Molecular Sciences 22, n.º 11 (30 de mayo de 2021): 5870. http://dx.doi.org/10.3390/ijms22115870.
Texto completoGenis, David, Sara Ortega-Cubero, Hector San Nicolás, Jordi Corral, Josep Gardenyes, Laura de Jorge, Eva López et al. "Heterozygous STUB1 mutation causes familial ataxia with cognitive affective syndrome (SCA48)". Neurology 91, n.º 21 (31 de octubre de 2018): e1988-e1998. http://dx.doi.org/10.1212/wnl.0000000000006550.
Texto completoLin, Jiacheng, Limin Yin, Xia-Zhen Xu, He-Chen Sun, Zhi-Hua Huang, Xue-Yun Ni, Yan Chen y Xu Lin. "Bay41-4109-induced aberrant polymers of hepatitis b capsid proteins are removed via STUB1-promoted p62-mediated macroautophagy". PLOS Pathogens 18, n.º 1 (14 de enero de 2022): e1010204. http://dx.doi.org/10.1371/journal.ppat.1010204.
Texto completoTurkgenc, Burcu, Burcin Sanlidag, Amber Eker, Aslı Giray, Ozgur Kutuk, Cengiz Yakicier, Aslıhan Tolun y Sehime G. Temel. "STUB1 polyadenylation signal variant AACAAA does not affect polyadenylation but decreases STUB1 translation causing SCAR16". Human Mutation 39, n.º 10 (22 de agosto de 2018): 1344–48. http://dx.doi.org/10.1002/humu.23601.
Texto completoMol, Merel O., Jeroen G. J. van Rooij, Esther Brusse, Annemieke J. M. H. Verkerk, Shamiram Melhem, Wilfred F. A. den Dunnen, Patrizia Rizzu, Chiara Cupidi, John C. van Swieten y Laura Donker Kaat. "Clinical and pathologic phenotype of a large family with heterozygous STUB1 mutation". Neurology Genetics 6, n.º 3 (23 de marzo de 2020): e417. http://dx.doi.org/10.1212/nxg.0000000000000417.
Texto completoSzpisjak, László, András Salamon, Viola L. Németh, Noémi Szépfalusi, Zoltán Maróti, Tibor Kalmár, Aliz Zimmermann, Dénes Zádori y Péter Klivényi. "Novel heterozygous STUB1 gene mutation causes SCA48 in a Hungarian patient". Ideggyógyászati szemle 76, n.º 1-2 (2023): 63–72. http://dx.doi.org/10.18071/isz.76.0063.
Texto completoCocozza, Sirio, Filippo M. Santorelli y Giuseppe De Michele. "STUB1 ‐Related Ataxias: A Challenging Diagnosis". Movement Disorders Clinical Practice 7, n.º 6 (19 de julio de 2020): 733–34. http://dx.doi.org/10.1002/mdc3.12992.
Texto completoSchuster, S., E. Heuten, A. Velic, J. Admard, M. Synofzik, S. Ossowski, B. Macek, S. Hauser y L. Schöls. "CHIP mutations affect the heat shock response differently in human fibroblasts and iPSC-derived neurons". Disease Models & Mechanisms 13, n.º 10 (1 de octubre de 2020): dmm045096. http://dx.doi.org/10.1242/dmm.045096.
Texto completoLiu, Chengfei, Cameron M. Armstrong, Shu Ning, Joy C. Yang, Wei Lou, Alan P. Lombard, Jinge Zhao et al. "ARVib suppresses growth of advanced prostate cancer via inhibition of androgen receptor signaling". Oncogene 40, n.º 35 (16 de julio de 2021): 5379–92. http://dx.doi.org/10.1038/s41388-021-01914-2.
Texto completoShi, Yueli, Xinyu Wang, Zhiyong Xu, Ying He, Chunyi Guo, Lingjuan He, Caijuan Huan et al. "PDLIM5 inhibits STUB1-mediated degradation of SMAD3 and promotes the migration and invasion of lung cancer cells". Journal of Biological Chemistry 295, n.º 40 (31 de julio de 2020): 13798–811. http://dx.doi.org/10.1074/jbc.ra120.014976.
Texto completoOlszewska, Diana A. y Justin A. Kinsella. "Reply to STUB1 ‐Related Ataxias: A Challenging Diagnosis". Movement Disorders Clinical Practice 7, n.º 6 (19 de julio de 2020): 735–36. http://dx.doi.org/10.1002/mdc3.12993.
Texto completoChoi, Won Hoon, Yejin Yun, Seoyoung Park, Jun Hyoung Jeon, Jeeyoung Lee, Jung Hoon Lee, Su-A. Yang et al. "Aggresomal sequestration and STUB1-mediated ubiquitylation during mammalian proteaphagy of inhibited proteasomes". Proceedings of the National Academy of Sciences 117, n.º 32 (28 de julio de 2020): 19190–200. http://dx.doi.org/10.1073/pnas.1920327117.
Texto completoDema, Alessandro, Dörte Faust, Katina Lazarow, Marc Wippich, Martin Neuenschwander, Kerstin Zühlke, Andrea Geelhaar et al. "Cyclin-Dependent Kinase 18 Controls Trafficking of Aquaporin-2 and Its Abundance through Ubiquitin Ligase STUB1, Which Functions as an AKAP". Cells 9, n.º 3 (10 de marzo de 2020): 673. http://dx.doi.org/10.3390/cells9030673.
Texto completoDavis, Erica E., Ravikumar Balasubramanian, Zachary A. Kupchinsky, David L. Keefe, Lacey Plummer, Kamal Khan, Blazej Meczekalski et al. "TCF12 haploinsufficiency causes autosomal dominant Kallmann syndrome and reveals network-level interactions between causal loci". Human Molecular Genetics 29, n.º 14 (3 de julio de 2020): 2435–50. http://dx.doi.org/10.1093/hmg/ddaa120.
Texto completoFerreira, Joao Vasco, Ana Rosa Soares, José S. Ramalho, Teresa Ribeiro-Rodrigues, Catarina Máximo, Mónica Zuzarte, Henrique Girão y Paulo Pereira. "Exosomes and STUB1/CHIP cooperate to maintain intracellular proteostasis". PLOS ONE 14, n.º 10 (15 de octubre de 2019): e0223790. http://dx.doi.org/10.1371/journal.pone.0223790.
Texto completoTang, Dong‐E, Yong Dai, Lie‐Wen Lin, Yong Xu, Dong‐Zhou Liu, Xiao‐Ping Hong, Hao‐Wu Jiang y Song‐Hui Xu. "STUB1 suppresseses tumorigenesis and chemoresistance through antagonizing YAP1 signaling". Cancer Science 110, n.º 10 (28 de agosto de 2019): 3145–56. http://dx.doi.org/10.1111/cas.14166.
Texto completoShang, Yu, Xinghui Zhao, Bo Tian, Yinyin Wang, Fangli Ren, Baoqing Jia, Yonggong Zhai, Wei Chen, Dacheng He y Zhijie Chang. "CHIP/Stub1 interacts with eIF5A and mediates its degradation". Cellular Signalling 26, n.º 5 (mayo de 2014): 1098–104. http://dx.doi.org/10.1016/j.cellsig.2014.01.030.
Texto completoWang, Shuai, Yi Li, Yun-Hong Hu, Ren Song, Yan Gao, Hai-Yun Liu, Hong-Bing Shu y Yu Liu. "STUB1 is essential for T-cell activation by ubiquitinating CARMA1". European Journal of Immunology 43, n.º 4 (15 de febrero de 2013): 1034–41. http://dx.doi.org/10.1002/eji.201242554.
Texto completoLöffek, Stefanie, Stefan Wöll, Jörg Höhfeld, Rudolf E. Leube, Cristina Has, Leena Bruckner-Tuderman y Thomas M. Magin. "The ubiquitin ligase CHIP/STUB1 targets mutant keratins for degradation". Human Mutation 31, n.º 4 (11 de febrero de 2010): 466–76. http://dx.doi.org/10.1002/humu.21222.
Texto completoRavel, Jean-Marie, Mehdi Benkirane, Nadège Calmels, Laëtitia Lambert, Michel Koenig y Mathilde Renaud. "Extension du spectre clinique de l’ataxie associée aux variations de STUB1". Revue Neurologique 177 (abril de 2021): S53. http://dx.doi.org/10.1016/j.neurol.2021.02.197.
Texto completoKumar, Dhiraj y Pravir Kumar. "Integrated Mechanism of Lysine 351, PARK2, and STUB1 in AβPP Ubiquitination". Journal of Alzheimer's Disease 68, n.º 3 (8 de abril de 2019): 1125–50. http://dx.doi.org/10.3233/jad-181219.
Texto completoMamun, Md Mahfuz Al, Muhammad Riaz Khan, Yifu Zhu, Yuwei Zhang, Shuai Zhou, Ran Xu, Ihtisham Bukhari et al. "Stub1 maintains proteostasis of master transcription factors in embryonic stem cells". Cell Reports 39, n.º 10 (junio de 2022): 110919. http://dx.doi.org/10.1016/j.celrep.2022.110919.
Texto completoDepondt, C., S. Donatello, N. Simonis, M. Rai, R. van Heurck, M. Abramowicz, M. D'Hooghe y M. Pandolfo. "Autosomal recessive cerebellar ataxia of adult onset due to STUB1 Mutations". Neurology 82, n.º 19 (9 de abril de 2014): 1749–50. http://dx.doi.org/10.1212/wnl.0000000000000416.
Texto completoShang, Yu, Xialian Xu, Xiaolin Duan, Junwei Guo, Yinyin Wang, Fangli Ren, Dacheng He y Zhijie Chang. "Hsp70 and Hsp90 oppositely regulate TGF-β signaling through CHIP/Stub1". Biochemical and Biophysical Research Communications 446, n.º 1 (marzo de 2014): 387–92. http://dx.doi.org/10.1016/j.bbrc.2014.02.124.
Texto completoFerreira, João Vasco, Hugo Fôfo, Eloy Bejarano, Carla Figueira Bento, José S. Ramalho, Henrique Girão y Paulo Pereira. "STUB1/CHIP is required for HIF1A degradation by chaperone-mediated autophagy". Autophagy 9, n.º 9 (29 de septiembre de 2013): 1349–66. http://dx.doi.org/10.4161/auto.25190.
Texto completoSalim, Corinna, Hannah Muders, Andreas Jäger y Anna Konermann. "Role of chaperone-assisted selective autophagy (CASA) in mechanical stress protection of periodontal ligament cells". Journal of Orofacial Orthopedics / Fortschritte der Kieferorthopädie 83, n.º 1 (4 de noviembre de 2021): 1–12. http://dx.doi.org/10.1007/s00056-021-00358-3.
Texto completoZhang, Yizhi, Zhoujia Chen, Xuerui Luo, Bin Wu, Bin Li y Bin Wang. "Cimetidine down-regulates stability of Foxp3 protein via Stub1 in Treg cells". Human Vaccines & Immunotherapeutics 12, n.º 10 (20 de junio de 2016): 2512–18. http://dx.doi.org/10.1080/21645515.2016.1191719.
Texto completoGazulla, José, Silvia Izquierdo-Alvarez, Esther Sierra-Martínez, María Eugenia Marta-Moreno y Sara Alvarez. "Inaugural cognitive decline, late disease onset and novel STUB1 variants in SCAR16". Neurological Sciences 39, n.º 12 (11 de septiembre de 2018): 2231–33. http://dx.doi.org/10.1007/s10072-018-3545-5.
Texto completoOlszewska, Diana A. y Justin A. Kinsella. "Extending the Phenotypic Spectrum Associated with STUB1 Mutations: A Case of Dystonia". Movement Disorders Clinical Practice 7, n.º 3 (9 de marzo de 2020): 318–24. http://dx.doi.org/10.1002/mdc3.12914.
Texto completoGuo, Junwei, Fangli Ren, Yinyin Wang, Shan Li, Zhengrong Gao, Xiaoyan Wang, Hongxiu Ning et al. "miR-764-5p promotes osteoblast differentiation through inhibition of CHIP/STUB1 expression". Journal of Bone and Mineral Research 27, n.º 7 (15 de junio de 2012): 1607–18. http://dx.doi.org/10.1002/jbmr.1597.
Texto completoDel Prete, Dolores, Richard C. Rice, Anjali M. Rajadhyaksha y Luciano D'Adamio. "Amyloid Precursor Protein (APP) May Act as a Substrate and a Recognition Unit for CRL4CRBN and Stub1 E3 Ligases Facilitating Ubiquitination of Proteins Involved in Presynaptic Functions and Neurodegeneration". Journal of Biological Chemistry 291, n.º 33 (20 de junio de 2016): 17209–27. http://dx.doi.org/10.1074/jbc.m116.733626.
Texto completoShi, Lin, Chen Li, Yan Gao, Jing Ye, Yuanan Lu y Xueqin Liu. "STUB1 activates antiviral response in zebrafish by promoting the expression of RIG-I". Fish & Shellfish Immunology 123 (abril de 2022): 182–93. http://dx.doi.org/10.1016/j.fsi.2022.02.052.
Texto completoCordoba, M., S. Rodriguez-Quiroga, E. M. Gatto, A. Alurralde y M. A. Kauffman. "Ataxia plus myoclonus in a 23-year-old patient due to STUB1 mutations". Neurology 83, n.º 3 (13 de junio de 2014): 287–88. http://dx.doi.org/10.1212/wnl.0000000000000600.
Texto completoGuo, Yu, Ming Zhao y Qianjin Lu. "Transcription factor RFX1 is ubiquitinated by E3 ligase STUB1 in systemic lupus erythematosus". Clinical Immunology 169 (agosto de 2016): 1–7. http://dx.doi.org/10.1016/j.clim.2016.06.003.
Texto completoShashar, Moshe, Mostafa E. Belghasem, Shinobu Matsuura, Joshua Walker, Sean Richards, Faisal Alousi, Keshab Rijal et al. "Targeting STUB1–tissue factor axis normalizes hyperthrombotic uremic phenotype without increasing bleeding risk". Science Translational Medicine 9, n.º 417 (22 de noviembre de 2017): eaam8475. http://dx.doi.org/10.1126/scitranslmed.aam8475.
Texto completoYonezawa, Taishi, Hirotaka Takahashi, Shiori Shikata, Xiaoxiao Liu, Moe Tamura, Shuhei Asada, Tsuyoshi Fukushima et al. "The ubiquitin ligase STUB1 regulates stability and activity of RUNX1 and RUNX1–RUNX1T1". Journal of Biological Chemistry 292, n.º 30 (23 de mayo de 2017): 12528–41. http://dx.doi.org/10.1074/jbc.m117.785675.
Texto completoRao, Lang, Youbao Sha y N. Tony Eissa. "The E3 ubiquitin ligase STUB1 regulates autophagy and mitochondrial biogenesis by modulating TFEB activity". Molecular & Cellular Oncology 4, n.º 6 (23 de octubre de 2017): e1372867. http://dx.doi.org/10.1080/23723556.2017.1372867.
Texto completoShang, Y., J. He, Y. Wang, Q. Feng, Y. Zhang, J. Guo, J. Li et al. "CHIP/Stub1 regulates the Warburg effect by promoting degradation of PKM2 in ovarian carcinoma". Oncogene 36, n.º 29 (27 de marzo de 2017): 4191–200. http://dx.doi.org/10.1038/onc.2017.31.
Texto completoChoi, Soyoun, Soo Ryun Park, Ja-Hyun Jang y Jong Hyeon Ahn. "Spinocerebellar Ataxia 48 Patient With a Novel De Novo Variant of STUB1". Journal of Clinical Neurology 18, n.º 6 (2022): 714. http://dx.doi.org/10.3988/jcn.2022.18.6.714.
Texto completoZhang, Z., X. K. Han y G. M. Ji. "The bandgap controlling by geometrical symmetry design in hybrid phononic crystal". International Journal of Modern Physics B 32, n.º 04 (febrero de 2018): 1850034. http://dx.doi.org/10.1142/s0217979218500340.
Texto completoZhang, Shaoyang, Xuemin Guo, Xiufeng Liu, Zhixiong Zhong, Shulan Yang y Haihe Wang. "Correction to: Adaptor SH3BGRL promotes breast cancer metastasis through PFN1 degradation by translational STUB1 upregulation". Oncogene 41, n.º 8 (20 de diciembre de 2021): 1227. http://dx.doi.org/10.1038/s41388-021-02129-1.
Texto completoSchuster, Stefanie, Srinethe Saravanakumar, Ludger Schöls y Stefan Hauser. "Generation of a homozygous CRISPR/Cas9-mediated knockout human iPSC line for the STUB1 locus". Stem Cell Research 34 (enero de 2019): 101378. http://dx.doi.org/10.1016/j.scr.2018.101378.
Texto completoLiu, Chia-Ming, Cheng-Chia Yu, Taichen Lin, Yi-Wen Liao, Pei-Ling Hsieh, Chuan-Hang Yu y Shiuan-Shinn Lee. "E3 ligase STUB1 attenuates stemness and tumorigenicity of oral carcinoma cells via transglutaminase 2 regulation". Journal of the Formosan Medical Association 119, n.º 10 (octubre de 2020): 1532–38. http://dx.doi.org/10.1016/j.jfma.2020.06.004.
Texto completoGoločorbin, Stanko. "STATIČKA MKE ANALIZA I ANALIZA OSCILOVANJA STUBA VETROGENERATORA". Zbornik radova Fakulteta tehničkih nauka u Novom Sadu 36, n.º 01 (25 de diciembre de 2020): 27–30. http://dx.doi.org/10.24867/11am09golocorbin.
Texto completoGoločorbin, Stanko. "STATIČKA MKE ANALIZA I ANALIZA OSCILOVANJA STUBA VETROGENERATORA". Zbornik radova Fakulteta tehničkih nauka u Novom Sadu 36, n.º 01 (25 de diciembre de 2020): 27–30. http://dx.doi.org/10.24867/11am09golocorbin.
Texto completoSung, Youngje. "Dual-Band Reconfigurable Antenna for Polarization Diversity". International Journal of Antennas and Propagation 2018 (2018): 1–7. http://dx.doi.org/10.1155/2018/6878607.
Texto completoLiu, Xiao, Zhiming Hao, Xin Luo y Zhengbao Jin. "Experimental Behavior and Modelling of Steel Bolted T-Stub Connections". Buildings 13, n.º 3 (21 de febrero de 2023): 575. http://dx.doi.org/10.3390/buildings13030575.
Texto completoLi, Ke, Tao Dong y Zhenghuan Xia. "Wideband Printed Wide-Slot Antenna with Fork-Shaped Stub". Electronics 8, n.º 3 (21 de marzo de 2019): 347. http://dx.doi.org/10.3390/electronics8030347.
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