B-Lymphocytes

Displaying 1 - 14 of 14CSV
Prakash, S., Steers, N. J., Li, Y., Sanchez-Rodriguez, E., Verbitsky, M., Robbins, I., Simpson, J., Pathak, S., Raska, M., Reily, C., Ng, A., Liang, J., DeMaria, N., Katiraei, A., Stevens, K. O., Fischman, C., Shapiro, S., Kodali, S., McCutchan, J., … Gharavi, A. G. (2025). Loss of GalNAc-T14 links O-glycosylation defects to alterations in B cell homing in IgA nephropathy. Journal of Clinical Investigation, 135(10). https://doi.org/10.1172/jci181164
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Kardava, L., Lim, J., Buckner, C. M., Lopes de Assis, F., Zhang, X., Wang, W., Melnyk, M. L., El Merhebi, O., Trihemasava, K., Teng, I.-T., Carroll, R., Jethmalani, Y., Castro, M., Lin, B. C., Praiss, L. H., Seamon, C. A., Kwong, P. D., Koup, R. A., Serebryannyy, L., … Moir, S. (2025). Phenotypic heterogeneity defines B cell responses to repeated SARS-CoV-2 exposures through vaccination and infection. Cell Reports, 44(4), 115557. https://doi.org/10.1016/j.celrep.2025.115557
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Hertel, A., Aguiar, T., Mashiko, S., Núñez, S., Moore, C., Gao, B., Ausmeier, M., Roy, P., & Zorn, E. (2024). Clones reactive to apoptotic cells and specific chemical adducts are prevalent among human thymic B cells. Frontiers in Immunology, 15. https://doi.org/10.3389/fimmu.2024.1462126
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Zisa, D., Zhang-Sun, J., Christos, P. J., & Kirou, K. A. (2024). Sustained depression of B cell counts in lupus nephritis after treatment with rituximab and/or belimumab is associated with fewer disease flares. Lupus, 33(9), 938–947. https://doi.org/10.1177/09612033241260283
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Leeman-Neill, R. J., Bhagat, G., & Basu, U. (2024). AID in non-Hodgkin B-cell lymphomas: The consequences of on- and off-target activity. Nucleic Acid Associated Mechanisms in Immunity and Disease, 127–164. https://doi.org/10.1016/bs.ai.2024.03.005
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Xu-Monette, Z. Y., Li, Y., Snyder, T., Yu, T., Lu, T., Tzankov, A., Visco, C., Bhagat, G., Qian, W., Dybkaer, K., Chiu, A., Tam, W., Zu, Y., Hsi, E. D., Hagemeister, F. B., Wang, Y., Go, H., Ponzoni, M., Ferreri, A. J. M., … Young, K. H. (2023). Tumor-Infiltrating Normal B Cells Revealed by Immunoglobulin Repertoire Clonotype Analysis Are Highly Prognostic and Crucial for Antitumor Immune Responses in DLBCL. Clinical Cancer Research, 29(23), 4808–4821. https://doi.org/10.1158/1078-0432.ccr-23-1554
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Laffleur, B., Batista, C. R., Zhang, W., Lim, J., Yang, B., Rossille, D., Wu, L., Estrella, J., Rothschild, G., Pefanis, E., & Basu, U. (2022). RNA exosome drives early B cell development via noncoding RNA processing mechanisms. Science Immunology, 7(72). https://doi.org/10.1126/sciimmunol.abn2738
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Domínguez Conde, C., Xu, C., Jarvis, L. B., Rainbow, D. B., Wells, S. B., Gomes, T., Howlett, S. K., Suchanek, O., Polanski, K., King, H. W., Mamanova, L., Huang, N., Szabo, P. A., Richardson, L., Bolt, L., Fasouli, E. S., Mahbubani, K. T., Prete, M., Tuck, L., … Teichmann, S. A. (2022). Cross-tissue immune cell analysis reveals tissue-specific features in humans. Science, 376(6594). https://doi.org/10.1126/science.abl5197
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Weisel, N. M., Joachim, S. M., Smita, S., Callahan, D., Elsner, R. A., Conter, L. J., Chikina, M., Farber, D. L., Weisel, F. J., & Shlomchik, M. J. (2021). Surface phenotypes of naive and memory B cells in mouse and human tissues. Nature Immunology, 23(1), 135–145. https://doi.org/10.1038/s41590-021-01078-x
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Rivas, M. A., Durmaz, C., Kloetgen, A., Chin, C. R., Chen, Z., Bhinder, B., Koren, A., Viny, A. D., Scharer, C. D., Boss, J. M., Elemento, O., Mason, C. E., & Melnick, A. M. (2021). Cohesin Core Complex Gene Dosage Contributes to Germinal Center Derived Lymphoma Phenotypes and Outcomes. Frontiers in Immunology, 12. https://doi.org/10.3389/fimmu.2021.688493
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Nair, L., Zhang, W., Laffleur, B., Jha, M. K., Lim, J., Lee, H., Wu, L., Alvarez, N. S., Liu, Z., Munteanu, E. L., Swayne, T., Hanna, J. H., Ding, L., Rothschild, G., & Basu, U. (2021). Mechanism of noncoding RNA-associated N6-methyladenosine recognition by an RNA processing complex during IgH DNA recombination. Molecular Cell, 81(19), 3949-3964.e7. https://doi.org/10.1016/j.molcel.2021.07.037
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Roberto, M. P., Varano, G., Vinas-Castells, R., Holmes, A. B., Kumar, R., Pasqualucci, L., Farinha, P., Scott, D. W., & Dominguez-Sola, D. (2021). Mutations in the transcription factor FOXO1 mimic positive selection signals to promote germinal center B cell expansion and lymphomagenesis. Immunity, 54(8), 1807-1824.e14. https://doi.org/10.1016/j.immuni.2021.07.009
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