Zeitschriftenartikel zum Thema „U2AF2“
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Warnasooriya, Chandani, Callen F. Feeney, Kholiswa M. Laird, Dmitri N. Ermolenko und Clara L. Kielkopf. „A splice site-sensing conformational switch in U2AF2 is modulated by U2AF1 and its recurrent myelodysplasia-associated mutation“. Nucleic Acids Research 48, Nr. 10 (28.04.2020): 5695–709. http://dx.doi.org/10.1093/nar/gkaa293.
Der volle Inhalt der QuelleBiancon, Giulia, Poorval Joshi, Torben Hunck, Yimeng Gao, Valentina Botti, Ashley Qin, Mukhtar Sadykov et al. „U2AF1 Driver Mutations in Hematopoietic Disorders Alter but Do Not Abrogate RNA Binding and Enlighten Structural Dependencies of the U2AF-RNA Complex“. Blood 134, Supplement_1 (13.11.2019): 1230. http://dx.doi.org/10.1182/blood-2019-130759.
Der volle Inhalt der QuelleYang, Chao-Yie, Xinrui Yuan, Mona Kazemi Sabzvar, Arda Durmaz, Krishnapriya Chinnaswamy, Jeanne Stuckey, Seth J. Corey, Jaroslaw P. Maciejewski und Valeria Visconte. „Small-Molecule U2 Auxiliary Factor Homology Motif (UHM) Domain Inhibitors Cause Splicing Pattern Changes in U2AF1 Mutant Leukemia Cells and Induce Sub-G1 Cell Cycle Arrest“. Blood 142, Supplement 1 (28.11.2023): 115. http://dx.doi.org/10.1182/blood-2023-190365.
Der volle Inhalt der QuelleBiancon, Giulia, Poorval Joshi, Torben Hunck, Josh Zimmer, Yimeng Gao, Martin Machyna, Valentina Botti et al. „High-Resolution Binding Atlas of U2AF1 Mutants Uncovers New Complexity in Splicing Alterations and Kinetics in Myeloid Malignancies“. Blood 136, Supplement 1 (05.11.2020): 3–4. http://dx.doi.org/10.1182/blood-2020-142854.
Der volle Inhalt der QuelleYuan, Xinrui, Mona Kazemi Sabzvar, Amol D. Patil, Arda Durmaz, Jaroslaw Maciejewski, Valeria Visconte und Chao-Yie Yang. „Targeting Poly(U) Binding Splicing Factor 60 (PUF60): A Small-Molecule Inhibitor Shows Anti-Leukemic Activity and Impacts Cell Cycle in Leukemia Models“. Blood 144, Supplement 1 (05.11.2024): 7470. https://doi.org/10.1182/blood-2024-210241.
Der volle Inhalt der QuelleAkef, Abdalla, Kathy McGraw, Steven D. Cappell und Daniel R. Larson. „Ribosome biogenesis is a downstream effector of the oncogenic U2AF1-S34F mutation“. PLOS Biology 18, Nr. 11 (02.11.2020): e3000920. http://dx.doi.org/10.1371/journal.pbio.3000920.
Der volle Inhalt der QuelleMaji, Debanjana, Eliezra Glasser, Steven Henderson, Justin Galardi, Mary J. Pulvino, Jermaine L. Jenkins und Clara L. Kielkopf. „Representative cancer-associated U2AF2 mutations alter RNA interactions and splicing“. Journal of Biological Chemistry 295, Nr. 50 (05.10.2020): 17148–57. http://dx.doi.org/10.1074/jbc.ra120.015339.
Der volle Inhalt der QuelleGrammatikakis, Ioannis, Amit Behera, Corrine Corrina R Hartford, Erica C. Pehrsson, XiaoLing Li, Yongmei Zhao, Biraj Shrethsa et al. „Abstract A013: Molecular mechanisms of intron retention in Long Non-Coding RNAs“. Molecular Cancer Therapeutics 23, Nr. 11_Supplement (14.11.2024): A013. http://dx.doi.org/10.1158/1538-8514.rnadrivers24-a013.
Der volle Inhalt der QuelleKang, Hyun-Seo, Carolina Sánchez-Rico, Stefanie Ebersberger, F. X. Reymond Sutandy, Anke Busch, Thomas Welte, Ralf Stehle et al. „An autoinhibitory intramolecular interaction proof-reads RNA recognition by the essential splicing factor U2AF2“. Proceedings of the National Academy of Sciences 117, Nr. 13 (18.03.2020): 7140–49. http://dx.doi.org/10.1073/pnas.1913483117.
Der volle Inhalt der QuelleBiancon, Giulia, Poorval Joshi, Joshua T. Zimmer, Torben Hunck, Yimeng Gao, Mark D. Lessard, Edward Courchaine et al. „U2AF1 Mutations Enhance Stress Granule Response in Myeloid Malignancies“. Blood 138, Supplement 1 (05.11.2021): 321. http://dx.doi.org/10.1182/blood-2021-149618.
Der volle Inhalt der QuelleAdamia, Sophia, Christian Bach, Patrick M. Pilarski, Martha Wadleigh, David P. Steensma, Gabriela Motyckova, Daniel J. DeAngelo, Richard M. Stone, Daniel G. Tenen und James D. Griffin. „Aberrant Splicing In Patients With AML Is Associated With Over- Expression Of Specific Splicing Factors“. Blood 122, Nr. 21 (15.11.2013): 3749. http://dx.doi.org/10.1182/blood.v122.21.3749.3749.
Der volle Inhalt der QuelleZhang, Xiaoqing, Matias A. Bustos, Rebecca Gross, Romela Irene Ramos, Teh-Ling Takeshima, Gordon B. Mills, Qiang Yu und Dave S. Hoon. „Abstract 3233: Interleukin enhancer-binding factor 2 amplification controls mRNA stability and enhances DNA damage response in metastatic melanoma“. Cancer Research 82, Nr. 12_Supplement (15.06.2022): 3233. http://dx.doi.org/10.1158/1538-7445.am2022-3233.
Der volle Inhalt der QuelleLin, Chien-Ling, Allison J. Taggart, Kian Huat Lim, Kamil J. Cygan, Luciana Ferraris, Robbert Creton, Yen-Tsung Huang und William G. Fairbrother. „RNA structure replaces the need for U2AF2 in splicing“. Genome Research 26, Nr. 1 (13.11.2015): 12–23. http://dx.doi.org/10.1101/gr.181008.114.
Der volle Inhalt der QuelleOkeyo-Owuor, Theresa, Brian S. White, Dipika Mohan, Malachi Griffith, Matthew J. Walter und Timothy Graubert. „Allele-Specific Effects Of U2AF1 Mutations On Alternative Splicing“. Blood 122, Nr. 21 (15.11.2013): 2748. http://dx.doi.org/10.1182/blood.v122.21.2748.2748.
Der volle Inhalt der QuelleSchott, Geraldine, Gaddiel Galarza-Muñoz, Noe Trevino, Xiaoting Chen, Matthew T. Weirauch, Simon G. Gregory, Shelton S. Bradrick und Mariano A. Garcia-Blanco. „U2AF2 binds IL7R exon 6 ectopically and represses its inclusion“. RNA 27, Nr. 5 (10.02.2021): 571–83. http://dx.doi.org/10.1261/rna.078279.120.
Der volle Inhalt der QuelleLove, Sierra L., und Aaron A. Hoskins. „Stuck on UUUU: New splicing inhibitors enhance U2AF2-RNA binding“. Cell Chemical Biology 28, Nr. 8 (August 2021): 1106–8. http://dx.doi.org/10.1016/j.chembiol.2021.07.021.
Der volle Inhalt der QuelleHoward, Jonathan M., Hai Lin, Andrew J. Wallace, Garam Kim, Jolene M. Draper, Maximilian Haeussler, Sol Katzman, Masoud Toloue, Yunlong Liu und Jeremy R. Sanford. „HNRNPA1 promotes recognition of splice site decoys by U2AF2 in vivo“. Genome Research 28, Nr. 5 (12.04.2018): 689–98. http://dx.doi.org/10.1101/gr.229062.117.
Der volle Inhalt der QuelleKralovicova, Jana, Ivana Borovska, Monika Kubickova, Peter J. Lukavsky und Igor Vorechovsky. „Cancer-Associated Substitutions in RNA Recognition Motifs of PUF60 and U2AF65 Reveal Residues Required for Correct Folding and 3′ Splice-Site Selection“. Cancers 12, Nr. 7 (11.07.2020): 1865. http://dx.doi.org/10.3390/cancers12071865.
Der volle Inhalt der QuelleFang, Li, Ting Ye und Yanmei An. „Circular RNA FOXP1 Induced by ZNF263 Upregulates U2AF2 Expression to Accelerate Renal Cell Carcinoma Tumorigenesis and Warburg Effect through Sponging miR-423-5p“. Journal of Immunology Research 2021 (03.09.2021): 1–16. http://dx.doi.org/10.1155/2021/8050993.
Der volle Inhalt der QuelleBraish, Julie, Prithviraj Bose, Naveen Pemmaraju, Sherry Pierce, Koji Sasaki, Keyur P. Patel, Hagop Kantarjian und Lucia Masarova. „Deeper Insight into Splicing Mutations in Myelofibrosis“. Blood 142, Supplement 1 (28.11.2023): 4580. http://dx.doi.org/10.1182/blood-2023-189168.
Der volle Inhalt der QuelleDouet-Guilbert, Nathalie, Benoît Soubise, Delphine G. Bernard und Marie-Bérengère Troadec. „Cytogenetic and Genetic Abnormalities with Diagnostic Value in Myelodysplastic Syndromes (MDS): Focus on the Pre-Messenger RNA Splicing Process“. Diagnostics 12, Nr. 7 (07.07.2022): 1658. http://dx.doi.org/10.3390/diagnostics12071658.
Der volle Inhalt der QuelleAdamia, Sophia, Hervé Avet-Loiseau, Jana Jakubikova, Suzan Lazo-Kallanian, John Daley, Laurence Lode, Ilene Galinsky, Richard M. Stone und James D. Griffin. „Genome-Wide Aberrant Splicing in Patients with Acute Myelold Leukemia (AML) Is Associated with Altered Expression of Splicing Factors“. Blood 120, Nr. 21 (16.11.2012): 652. http://dx.doi.org/10.1182/blood.v120.21.652.652.
Der volle Inhalt der QuelleZhang, P., S. Feng, G. Liu, H. Wang, A. Fu, H. Zhu, Q. Ren et al. „CD82 suppresses CD44 alternative splicing-dependent melanoma metastasis by mediating U2AF2 ubiquitination and degradation“. Oncogene 35, Nr. 38 (04.04.2016): 5056–69. http://dx.doi.org/10.1038/onc.2016.67.
Der volle Inhalt der QuelleGlasser, Eliezra, Anant A. Agrawal, Jermaine L. Jenkins und Clara L. Kielkopf. „Cancer-Associated Mutations Mapped on High-Resolution Structures of the U2AF2 RNA Recognition Motifs“. Biochemistry 56, Nr. 36 (September 2017): 4757–61. http://dx.doi.org/10.1021/acs.biochem.7b00551.
Der volle Inhalt der QuelleKielkopf, Clara L., Callen F. Feeney, Rakesh Chatrikhi, Andrew MacRae, Gerorgios Alachouzos, Zackary Falls, Kholiswa M. Laird et al. „A synthetic molecule stalls pre-mRNA splicing by enhancing cancer-relevant U2AF2–RNA complexes“. Acta Crystallographica Section A Foundations and Advances 75, a1 (20.07.2019): a103. http://dx.doi.org/10.1107/s0108767319098969.
Der volle Inhalt der QuelleWhisenant, Thomas C. „Gene expression profiling of U2AF2 dependent RNA-protein interactions during CD4 + T cell activation“. Genomics Data 11 (März 2017): 77–80. http://dx.doi.org/10.1016/j.gdata.2016.12.006.
Der volle Inhalt der QuelleKashlakova, A. I., E. N. Parovichnikova, B. V. Biderman, Y. V. Sidorova, Y. A. Chabaeva, V. V. Troitskaya, I. A. Lukianova et al. „Next-generation sequencing-based molecular genetic profiling in adults with acute myeloid leukaemia“. Russian journal of hematology and transfusiology 65, Nr. 4 (10.12.2020): 444–59. http://dx.doi.org/10.35754/0234-5730-2020-65-4-444-459.
Der volle Inhalt der QuelleGalardi, Justin W., Victoria N. Bela, Nazish N. Jeffery, Eliezra Glasser, Sarah Loerch, Jermaine L. Jenkins, Mary J. Pulvino und Clara L. Kielkopf. „A UHM-ULM interface contributes to the pre-mRNA splicing functions of U2AF2 and SF3B1“. Biophysical Journal 121, Nr. 3 (Februar 2022): 451a. http://dx.doi.org/10.1016/j.bpj.2021.11.513.
Der volle Inhalt der QuelleMaji, Debanjana, Eliezra Glasser, Jermaine L. Jenkins und Clara L. Kielkopf. „Cancer-associated mutations of the pre-mRNA splicing factor U2AF2 alter splice site signal recognition“. Acta Crystallographica Section A Foundations and Advances 74, a1 (20.07.2018): a232. http://dx.doi.org/10.1107/s0108767318097672.
Der volle Inhalt der QuelleChatrikhi, Rakesh, Callen F. Feeney, Mary J. Pulvino, Georgios Alachouzos, Andrew J. MacRae, Zackary Falls, Sumit Rai et al. „A synthetic small molecule stalls pre-mRNA splicing by promoting an early-stage U2AF2-RNA complex“. Cell Chemical Biology 28, Nr. 8 (August 2021): 1145–57. http://dx.doi.org/10.1016/j.chembiol.2021.02.007.
Der volle Inhalt der QuelleButler, Emily G., Debanjana Maji, Mary J. Pulvino, Jermaine L. Jenkins und Clara L. Kielkopf. „Representative cancer-associated U2AF2 mutations occurring at the inter-RRM interface alter RNA interactions and splicing“. Biophysical Journal 121, Nr. 3 (Februar 2022): 480a. http://dx.doi.org/10.1016/j.bpj.2021.11.388.
Der volle Inhalt der QuelleSutandy, F. X. Reymond, Stefanie Ebersberger, Lu Huang, Anke Busch, Maximilian Bach, Hyun-Seo Kang, Jörg Fallmann et al. „In vitro iCLIP-based modeling uncovers how the splicing factor U2AF2 relies on regulation by cofactors“. Genome Research 28, Nr. 5 (11.04.2018): 699–713. http://dx.doi.org/10.1101/gr.229757.117.
Der volle Inhalt der QuelleMohamed, Aminetou Mint, Morgan Thenoz, Catherine Koering, Pierre Mallinjoud, Didier Auboeuf, Francoise Solly, Meyling Cheok et al. „DEK and WT1 Affect Alternative Splicing of Genes Involved in Hematopoietic Cell Lineage and Resistance to Chemotherapy in Acute Myeloid Leukemia Cells.“ Blood 120, Nr. 21 (16.11.2012): 2392. http://dx.doi.org/10.1182/blood.v120.21.2392.2392.
Der volle Inhalt der QuelleShepard, Jeremiah, Martin Reick, Sara Olson und Brenton R. Graveley. „Characterization of U2AF6, a Splicing Factor Related to U2AF35“. Molecular and Cellular Biology 22, Nr. 1 (01.01.2002): 221–30. http://dx.doi.org/10.1128/mcb.22.1.221-230.2002.
Der volle Inhalt der QuelleGault, Christine M., Federico Martin, Wenbin Mei, Fang Bai, Joseph B. Black, W. Brad Barbazuk und A. Mark Settles. „Aberrant splicing in maize rough endosperm3 reveals a conserved role for U12 splicing in eukaryotic multicellular development“. Proceedings of the National Academy of Sciences 114, Nr. 11 (27.02.2017): E2195—E2204. http://dx.doi.org/10.1073/pnas.1616173114.
Der volle Inhalt der QuelleKohlmann, Alexander, Sandra Weissmann, Ulrike Schoeck, Vera Grossmann, Wolfgang Kern, Claudia Haferlach, Susanne Schnittger und Torsten Haferlach. „First Results of a 31-Gene Panel Targeted to Investigate Myeloid Malignancies by Next-Generation Amplicon Deep-Sequencing“. Blood 120, Nr. 21 (16.11.2012): 883. http://dx.doi.org/10.1182/blood.v120.21.883.883.
Der volle Inhalt der QuelleChen, Xiaofeng, Dongling Cai, Hao Li, Qipeng Wei, Xi Li, Zhuangxun Han, Jinjun Liang et al. „Exosomal U2AF2 derived from human bone marrow mesenchymal stem cells attenuates the intervertebral disc degeneration through circ_0036763/miR-583/ACAN axis“. Regenerative Therapy 25 (März 2024): 344–54. http://dx.doi.org/10.1016/j.reth.2024.01.006.
Der volle Inhalt der QuelleZhao, Yangjing, Weili Cai, Ye Hua, Xiaochen Yang und Jingdong Zhou. „The Biological and Clinical Consequences of RNA Splicing Factor U2AF1 Mutation in Myeloid Malignancies“. Cancers 14, Nr. 18 (10.09.2022): 4406. http://dx.doi.org/10.3390/cancers14184406.
Der volle Inhalt der QuelleBoddu, Prajwal, Abhishek Gupta, Rahul Roy, barbara De La Pena Avalos, Anne Olazabal Herrero, Joshua Zimmer, Matthew Simon et al. „Impaired Early Spliceosome Complex Assembly Underlies Gene Body Elongation Transcription Defect in SF3B1K700E“. Blood 142, Supplement 1 (28.11.2023): 714. http://dx.doi.org/10.1182/blood-2023-187303.
Der volle Inhalt der QuelleVandermeulen, Charlotte, Tina O’Grady, Jerome Wayet, Bartimee Galvan, Sibusiso Maseko, Majid Cherkaoui, Alice Desbuleux et al. „The HTLV-1 viral oncoproteins Tax and HBZ reprogram the cellular mRNA splicing landscape“. PLOS Pathogens 17, Nr. 9 (20.09.2021): e1009919. http://dx.doi.org/10.1371/journal.ppat.1009919.
Der volle Inhalt der QuelleOzygała, Aleksandra, Joanna Rokosz-Mierzwa, Paulina Widz, Paulina Skowera, Mateusz Wiliński, Borys Styka und Monika Lejman. „Biological Markers of Myeloproliferative Neoplasms in Children, Adolescents and Young Adults“. Cancers 16, Nr. 23 (08.12.2024): 4114. https://doi.org/10.3390/cancers16234114.
Der volle Inhalt der QuelleSoucek, Sharon, Yi Zeng, Deepti L. Bellur, Megan Bergkessel, Kevin J. Morris, Qiudong Deng, Duc Duong et al. „Evolutionarily Conserved Polyadenosine RNA Binding Protein Nab2 Cooperates with Splicing Machinery To Regulate the Fate of Pre-mRNA“. Molecular and Cellular Biology 36, Nr. 21 (15.08.2016): 2697–714. http://dx.doi.org/10.1128/mcb.00402-16.
Der volle Inhalt der QuelleWang, S. Y., J. L. Huo, Y. W. Miao, W. M. Cheng und Y. Z. Zeng. „Complementary DNA cloning, sequence analysis, and tissue transcription profile of a novel U2AF2 gene from the Chinese Banna mini-pig inbred line“. Genetics and Molecular Research 12, Nr. 2 (2013): 925–34. http://dx.doi.org/10.4238/2013.april.2.9.
Der volle Inhalt der QuelleLi, Jing, Dongdong Cheng, Miaoxin Zhu, Huajian Yu, Zhen Pan, Lei Liu, Qin Geng, Hongyu Pan, Mingxia Yan und Ming Yao. „OTUB2 stabilizes U2AF2 to promote the Warburg effect and tumorigenesis via the AKT/mTOR signaling pathway in non-small cell lung cancer“. Theranostics 9, Nr. 1 (2019): 179–95. http://dx.doi.org/10.7150/thno.29545.
Der volle Inhalt der QuellePrzychodzen, Bartlomiej P., Hideki Makishima, Andres Jerez, Richard A. Padgett und Jaroslaw P. Maciejewski. „Downstream Consequences of U2AF1 Mutations in MDS Are a Result of a Specific Misplicing Patterns Due to Faulty Recognition of 3'acceptor Splice Site“. Blood 120, Nr. 21 (16.11.2012): 3517. http://dx.doi.org/10.1182/blood.v120.21.3517.3517.
Der volle Inhalt der QuelleLu, Sydney X., Eric Wang, Alessandro Pastore, Chen Xufeng, Jochen Imig, Stanley C. Lee, Yohana Ghebrechristos et al. „Therapeutic Targeting of an RNA Splicing Factor Network for the Treatment of Myeloid Neoplasms“. Blood 132, Supplement 1 (29.11.2018): 427. http://dx.doi.org/10.1182/blood-2018-99-111430.
Der volle Inhalt der QuelleWhisenant, Thomas C., Eigen R. Peralta, Lauren D. Aarreberg, Nina J. Gao, Steven R. Head, Phillip Ordoukhanian, Jamie R. Williamson und Daniel R. Salomon. „The Activation-Induced Assembly of an RNA/Protein Interactome Centered on the Splicing Factor U2AF2 Regulates Gene Expression in Human CD4 T Cells“. PLOS ONE 10, Nr. 12 (07.12.2015): e0144409. http://dx.doi.org/10.1371/journal.pone.0144409.
Der volle Inhalt der QuelleBogusz, Agata M. „EBV-Negative Monomorphic B-Cell Posttransplant Lymphoproliferative Disorder with Marked Morphologic Pleomorphism and Pathogenic Mutations in ASXL1, BCOR, CDKN2A, NF1, and TP53“. Case Reports in Hematology 2017 (2017): 1–8. http://dx.doi.org/10.1155/2017/5083463.
Der volle Inhalt der QuelleAdema, Vera, Courtney E. Hershberger, Wencke Walter, Cassandra M. Kerr, Stephan Hutter, Yasunobu Nagata, Hassan Awada et al. „Hotspot U2AF1 Mutations Determine Missplicing Selectivity: Novel Mechanisms Altering Splicing Factors“. Blood 134, Supplement_1 (13.11.2019): 2985. http://dx.doi.org/10.1182/blood-2019-129367.
Der volle Inhalt der QuelleCorrea, Juan Gonzalo, Alberto Alvarez-Larrán, Monica Lopez-Guerra, Juan Carlos Hernandez Boluda, Mar Tormo, María Rozman, Daniel Martínez, Dolors Colomer, Jordi Esteve und Francisco Cervantes. „Triple Negative Myelofibrosis and Myelodysplastic Syndrome with Fibrosis: Clinico-Biological Characterization and Correlation with Gene Mutations“. Blood 132, Supplement 1 (29.11.2018): 4299. http://dx.doi.org/10.1182/blood-2018-99-115888.
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