Literature DB >> 25085254

Ikaros fingers on lymphocyte differentiation.

Toshimi Yoshida1, Katia Georgopoulos.   

Abstract

The Ikaros family of DNA-binding proteins are critical regulators of lymphocyte differentiation. In multipotent, hematopoietic progenitors, Ikaros supports transcriptional priming of genes promoting lymphocyte differentiation. Ikaros targets the Nucleosome Remodeling Deacetylase (NuRD) complex to lymphoid lineage genes, thereby increasing chromatin accessibility and transcriptional priming. After lymphoid lineage specification, Ikaros expression is raised to levels characteristic of intermediate B cell and T cell precursors, which is necessary to support maturation and prevent leukemogenesis. Loss of Ikaros in T cell precursors allows the NuRD complex to repress lymphocyte genes and extends its targeting to genes that support growth and proliferation, causing their activation and triggering a cascade of events that leads to leukemogenesis. Loss of Ikaros in B cell precursors blocks differentiation and perpetuates stromal adhesion by enhancing integrin signaling. The combination of integrin and cytokine signaling in Ikaros-deficient pre-B cells promotes their survival and self-renewal. The stages of lymphocyte differentiation that are highly dependent on Ikaros are underscored by changes in Ikaros transcription, supported by a complex network of stage-specific regulatory networks that converge upon the Ikzf1 locus. It is increasingly apparent that understanding the regulatory networks that operate upstream and downstream of Ikaros is critical not only for our understanding of normal lymphopoiesis, but also in placing the right finger on the mechanisms that support hematopoietic malignancies in mouse and human.

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Year:  2014        PMID: 25085254      PMCID: PMC4492456          DOI: 10.1007/s12185-014-1644-5

Source DB:  PubMed          Journal:  Int J Hematol        ISSN: 0925-5710            Impact factor:   2.490


  69 in total

1.  Ikaros DNA-binding proteins direct formation of chromatin remodeling complexes in lymphocytes.

Authors:  J Kim; S Sif; B Jones; A Jackson; J Koipally; E Heller; S Winandy; A Viel; A Sawyer; T Ikeda; R Kingston; K Georgopoulos
Journal:  Immunity       Date:  1999-03       Impact factor: 31.745

2.  Unconventional potentiation of gene expression by Ikaros.

Authors:  Joseph Koipally; Elizabeth J Heller; John R Seavitt; Katia Georgopoulos
Journal:  J Biol Chem       Date:  2002-01-17       Impact factor: 5.157

3.  The dermatomyositis-specific autoantigen Mi2 is a component of a complex containing histone deacetylase and nucleosome remodeling activities.

Authors:  Y Zhang; G LeRoy; H P Seelig; W S Lane; D Reinberg
Journal:  Cell       Date:  1998-10-16       Impact factor: 41.582

4.  Revised map of the human progenitor hierarchy shows the origin of macrophages and dendritic cells in early lymphoid development.

Authors:  Sergei Doulatov; Faiyaz Notta; Kolja Eppert; Linh T Nguyen; Pamela S Ohashi; John E Dick
Journal:  Nat Immunol       Date:  2010-06-13       Impact factor: 25.606

5.  The lymphoid transcription factor LyF-1 is encoded by specific, alternatively spliced mRNAs derived from the Ikaros gene.

Authors:  K Hahm; P Ernst; K Lo; G S Kim; C Turck; S T Smale
Journal:  Mol Cell Biol       Date:  1994-11       Impact factor: 4.272

Review 6.  Pathogenesis of myeloma.

Authors:  Kenneth C Anderson; Ruben D Carrasco
Journal:  Annu Rev Pathol       Date:  2011       Impact factor: 23.472

Review 7.  Multiple myeloma-initiating cells.

Authors:  Naoki Hosen
Journal:  Int J Hematol       Date:  2013-02-19       Impact factor: 2.490

8.  E2A proteins promote development of lymphoid-primed multipotent progenitors.

Authors:  Sheila Dias; Robert Månsson; Sandeep Gurbuxani; Mikael Sigvardsson; Barbara L Kee
Journal:  Immunity       Date:  2008-07-31       Impact factor: 31.745

9.  Mi-2 beta associates with BRG1 and RET finger protein at the distinct regions with transcriptional activating and repressing abilities.

Authors:  Yohei Shimono; Hideki Murakami; Kumi Kawai; Paul A Wade; Kaoru Shimokata; Masahide Takahashi
Journal:  J Biol Chem       Date:  2003-10-06       Impact factor: 5.157

10.  Aiolos is required for the generation of high affinity bone marrow plasma cells responsible for long-term immunity.

Authors:  Marta Cortés; Katia Georgopoulos
Journal:  J Exp Med       Date:  2004-01-12       Impact factor: 14.307

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  31 in total

1.  Prognostic value of rare IKZF1 deletion in childhood B-cell precursor acute lymphoblastic leukemia: an international collaborative study.

Authors:  J M Boer; A van der Veer; D Rizopoulos; M Fiocco; E Sonneveld; H A de Groot-Kruseman; R P Kuiper; P Hoogerbrugge; M Horstmann; M Zaliova; C Palmi; J Trka; E Fronkova; M Emerenciano; M do Socorro Pombo-de-Oliveira; W Mlynarski; T Szczepanski; K Nebral; A Attarbaschi; N Venn; R Sutton; C J Schwab; A Enshaei; A Vora; M Stanulla; M Schrappe; G Cazzaniga; V Conter; M Zimmermann; A V Moorman; R Pieters; M L den Boer
Journal:  Leukemia       Date:  2015-07-23       Impact factor: 11.528

2.  Guest editorial: molecular mechanisms of lymphocyte development: recent findings.

Authors:  Takafumi Yokota
Journal:  Int J Hematol       Date:  2014-08-05       Impact factor: 2.490

3.  Loss of B Cells in Patients with Heterozygous Mutations in IKAROS.

Authors:  H S Kuehn; B Boisson; M E Conley; S D Rosenzweig; C Cunningham-Rundles; J Reichenbach; A Stray-Pedersen; E W Gelfand; P Maffucci; K R Pierce; J K Abbott; K V Voelkerding; S T South; N H Augustine; J S Bush; W K Dolen; B B Wray; Y Itan; A Cobat; H S Sorte; S Ganesan; S Prader; T B Martins; M G Lawrence; J S Orange; K R Calvo; J E Niemela; J-L Casanova; T A Fleisher; H R Hill; A Kumánovics
Journal:  N Engl J Med       Date:  2016-03-17       Impact factor: 91.245

Review 4.  Mechanisms of action and resistance for multiple myeloma novel drug treatments.

Authors:  Shinsuke Iida
Journal:  Int J Hematol       Date:  2016-06-09       Impact factor: 2.490

5.  Integrated STAT3 and Ikaros Zinc Finger Transcription Factor Activities Regulate Bcl-6 Expression in CD4+ Th Cells.

Authors:  Kaitlin A Read; Michael D Powell; Chandra E Baker; Bharath K Sreekumar; Veronica M Ringel-Scaia; Holly Bachus; R Emily Martin; Ian D Cooley; Irving C Allen; Andre Ballesteros-Tato; Kenneth J Oestreich
Journal:  J Immunol       Date:  2017-08-28       Impact factor: 5.422

6.  Role of Polycomb RYBP in Maintaining the B-1-to-B-2 B-Cell Lineage Switch in Adult Hematopoiesis.

Authors:  Carmela Calés; Leticia Pavón; Katarzyna Starowicz; Claudia Pérez; Mónica Bravo; Tomokatsu Ikawa; Haruhiko Koseki; Miguel Vidal
Journal:  Mol Cell Biol       Date:  2015-12-28       Impact factor: 4.272

7.  IRF4 modulates the response to BCR activation in chronic lymphocytic leukemia regulating IKAROS and SYK.

Authors:  Rossana Maffei; Stefania Fiorcari; Stefania Benatti; Claudio Giacinto Atene; Silvia Martinelli; Patrizia Zucchini; Leonardo Potenza; Mario Luppi; Roberto Marasca
Journal:  Leukemia       Date:  2021-02-23       Impact factor: 11.528

Review 8.  The molecular mechanism of thalidomide analogs in hematologic malignancies.

Authors:  Stefanie Lindner; Jan Krönke
Journal:  J Mol Med (Berl)       Date:  2016-08-05       Impact factor: 4.599

Review 9.  AHR Function in Lymphocytes: Emerging Concepts.

Authors:  Liang Zhou
Journal:  Trends Immunol       Date:  2015-12-11       Impact factor: 16.687

Review 10.  IKAROS Family Zinc Finger 1-Associated Diseases in Primary Immunodeficiency Patients.

Authors:  Cristiane J Nunes-Santos; Hye Sun Kuehn; Sergio D Rosenzweig
Journal:  Immunol Allergy Clin North Am       Date:  2020-08       Impact factor: 3.479

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