Zeitschriftenartikel (79)

2020
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Remmerie, A.; Martens, L.; ́Thone, T.; Castoldi, A.; Seurinck, R.; Pavie, B.; Roels, J.; Vanneste, B.; Prijck, S. D.; Vanhockerhout, M. et al.; Latib, M. B. A.; Devisscher, L.; Hoorens, A.; Bonnardel, J.; Vandamme, N.; Kremer, A.; Borghgraef, P.; Vlierberghe, H. V.; Lippens, S.; Pearce, E. J.; Saeys, Y.; Scott, a. C. L.: Osteopontin Expression Identifies a Subsetof Recruited Macrophages Distinctfrom Kupffer Cells in the Fatty Liver. Immunity 53, S. 641 - 657 (2020)
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Iwanami, N.; Lawir, D.-F.; Sikora, K.; Meara, C. O.; Takeshita, K.; Schorpp, M.; Boehm, T.: Transgenerational inheritance of impaired larval T cell development in zebrafish. Nature Communications 11, S. 4505 (2020)
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Carrelha, J.; Lin, D. S.; Rodriguez-Fraticelli, A. E.; Luis, T. C.; Wilkinson, A. C.; Cabezas-Wallscheid, N.; Tremblay, C. S.; Haas, S.: Single-cell lineage tracing approaches in hematology research - technical consideration. Experimental Hematology 89, S. 26 - 36 (2020)
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Kury, P.; Führer, M.; Fuchs, S.; Lorenz, M. R.; Giorgetti, O. B.; Bakhtiar, S.; Frei, A. P.; Fisch, P.; Boehm, T.; Schwarz, K. et al.; Speckmann, C.; Ehl, S.: Long-term robustness of a T-cell system emerging from somatic rescue of a genetic block in T-cell development. EBioMedicine 59, 102961 (2020)
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Kelly, B.; Pearce, E. L.: Amino Assets: How Amino Acids Support Immunity. Cell Metabolism 32, S. 154 - 175 (2020)
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Klein-Geltink, R.; Edwards-Hicks, J.; Apostolova, P.; O'Sullivan, D.; Sanin, P. D. E.; Annette, E. P.; Puleston, D.; Ligthart, N. A. M.; Büscher, J. M.; Grzes, K. et al.; Kabat, A.; Stanczak, M.; Curtis, J.; Hässler, F.; Uhl, F. M.; Fabri, M.; Zeiser, R.; Pearce, E. J.; Pearce, E. L.: Metabolic conditioning of CD8+ effector T cells for adoptive cell therapy. Nature Metabolism 2, S. 703 - 716 (2020)
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Trancoso, I.; Morimoto, R.; Boehm, T.: Co-evolution of mutagenic genome deditors and vertebrate adaptive immunity. Current Opinion in Immunology 65, S. 32 - 41 (2020)
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Wiese, M.; Bannister, A. J.: Two genomes, one cell: Mitochondrial-nuclear coordination via epigenetic pathways. Molecular Metabolism 38, S. 1 - 16 (2020)
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Woyciechowski, S.; Weißert, K.; Ammann, S.; Aichele, P.; Pircher, H.: NK1.1+ innate lymphoid cells in salivary glands inhibit establishment of tissue-resident memory CD8+ T cells in mice. Eur j Immunol 50, S. 1952 - 1958 (2020)
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Iwanami, N.; Takeshita, K.; Lawir, D.-F.; Suetake, I.; Tajima, S.; Sikora, K.; Trancoso, I.; O'Meara, C.; Siamishi, I.; Takahama, Y. et al.; Furutani-Seiki, M.; Kondoh, H.; Yonezawa, Y.; Schorpp, M.; Boehm, T.: Epigenetic Protection of Vertebrate Lymphoid Progenitor Cells by Dnmt1. iScience 23, 101260 (2020)
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Samata, M.; Alexia, A.; Richard, G.; Georgiev, P.; Nuebler, J.; Kulkarni, T.; Renschler, G. V.; Basilicata, M. F.; Zenk, F. L.; Shvedunova, M. et al.; Semplicio, G.; Mirny, L.; Iovino, N.; Akhtar, A.: Intergenerationally Maintained Histone H4 Lysine 16 Acetylation Is Instructive for Future Gene Activation. Cell 182, S. 127 - 144 (2020)
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Lawir, D.-F.; Sikora, K.; O'Meara, C. P.; Schorpp, M.; Boehm, T.: Pervasive changes of mRNA splicing in upf1-deficient zebrafish identify rpl10a as a regulator of T cell development. Proceedings of the National Academy of Sciences of the United States of America 117, S. 15799 - 15808 (2020)
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Hua, G.; Bergon, A.; Cauchy, P.; Kahn-Perlès, B.; Bertucci, F.; Birnbaum, D.; Benkirane-Jessel, N.; Imbert, J.: ERBB2b mRNA isoform encodes a nuclear variant of the ERBB2 oncogene in breast cancer. Journal of Cellular Biochemistry 121, S. 4870 - 4886 (2020)
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Clapes, T.; Trompouki, E.: Hematopoietic regeneration under the spell of epigenetic-epitranscriptomic factors and transposable elements. Current Opinion in Hematology 27, S. 264 - 272 (2020)
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Haring, E.; Uhl, F. M.; Andrieux, G.; Proietti, M.; Bulashevska, A.; Sauer, B.; Braun, L. M.; de Gomez, E. V.; Esser, P. R.; Martin, S. F. et al.; Pfeifer, D.; Follo, M.; Schmitt-Graeff, A.; Büscher, J. M.; Duyster, J.; Grimbacher, B.; Boerries, M.; Pearce, E. L.; Zeiser, R.; Apostolova, P.: Bile acids regulate intestinal antigen presentation and reduce graft-versus-host disease without impairing the graft-versus-leukemia effect. Haematologica 106 (8), S. 2131 - 2146 (2020)
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Sagar, S.; Pokrovskii, M.; Herman, J. S.; Naik, S.; Sock, E.; Zeis, P.; Lausch, U.; Wegner, M.; Tanriver, Y.; Littman, D. R. et al.; Grün, D.: Deciphering the regulatory landscapte of fetal and adult γδ T-cell development at single-cell resolution. The EMBO Journal 39, e104159 (2020)
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Burton, A.; Brochard, V.; Galan, C.; Ruiz-Morales, E. R.; Rovira, Q.; Rodriguez-Terrones, D.; Kruse, K.; Le Gras, S.; Udayakumar, V. S.; Chin, H. G. et al.; Eid, A.; Liu, X.; Wang, C.; Gao, S.; Pradhan, S.; Vaquerizas, J. M.; Beaujean, N.; Jenuwein, T.; Torres-Padilla, M.-E.: Heterochromatin establishment during early mammalian development is regulated by pericentromeric RNA and characterized by non-repressive H3K9me3. Nature Cell Biology 22, S. 767 - 778 (2020)
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Healton, S. E.; Pinto, H. D.; Mishra, L. N.; Hamilton, G. A.; Wheat, J. C.; Swist-Rosowska, K.; Nicholas, S.; Dou, Y.; Steidl, U.; Jenuwein, T. et al.; Gamble, M. J.; Skoultchi, A. I.: H1 linker histones silence repetitive elements by promoting both histone H3K9 methylation and chromatin compaction. Proceedings of the National Academy of Sciences of the United States of America 117, S. 14251 - 14258 (2020)
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Milam, A. A. V.; Bartleson, J. M.; Buck, M. D.; Chang, C.-H.; Sergushichev, A.; Donermeyer, D. L.; Lam, W. Y.; Pearce, E. L.; Artyomov, M. N.; Allen, P. M.: Tonic TCR Signaling Inversely Regulates the Basal Metabolism of CD4+ T Cells. ImmunoHorizons / The American Association of Immunologists (AAI) 4, S. 485 - 497 (2020)
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Kozyra, E. J.; Pastor, V. B.; Lefkopoulos, S.; Sahoo, S. S.; Busch, H.; Voss, R. K.; Erlacher, M.; Lebrecht, D.; Szvetnik, E. A.; Hirabayashi, S. et al.; Pasaulienė, R.; Pedace, L.; Tartaglia, M.; Klemann, C.; Metzger, P.; Boerries, M.; Catala, A.; Hasle, H.; de Haas, V.; Kállay, K.; Masetti, R.; Moerloose, B. D.; Dworzak, M.; Schmugge, M.; Smith, O.; Starý, J.; Mejstrikova, E.; Ussowicz, M.; Morris, E.; Singh, P.; Collin, M.; Dereka, M.; Göhring, G.; Flotho, C.; Strahm, B.; Locatelli, F.; Niemeyer, C. M.; Trompouki, E.; Wlodarski, M. W.; EWOG-MDS, W. G.: Synonymous GATA2 mutations result in selective loss of mutated RNA and are common in patients with GATA2 deficiency. Leukemia: the Journal of Normal and Malignant Hemopoiese ; Official Journal of the Leukemia Research Fund U.K. 34, S. 2673 - 2687 (2020)
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