Literature DB >> 31068388

ISWI ATPase Smarca5 Regulates Differentiation of Thymocytes Undergoing β-Selection.

Tomas Zikmund1, Juraj Kokavec1, Tereza Turkova1, Filipp Savvulidi2, Helena Paszekova1, Sona Vodenkova3,4, Radislav Sedlacek5, Arthur I Skoultchi6, Tomas Stopka7.   

Abstract

Development of lymphoid progenitors requires a coordinated regulation of gene expression, DNA replication, and gene rearrangement. Chromatin-remodeling activities directed by SWI/SNF2 superfamily complexes play important roles in these processes. In this study, we used a conditional knockout mouse model to investigate the role of Smarca5, a member of the ISWI subfamily of such complexes, in early lymphocyte development. Smarca5 deficiency results in a developmental block at the DN3 stage of αβ thymocytes and pro-B stage of early B cells at which the rearrangement of Ag receptor loci occurs. It also disturbs the development of committed (CD73+) γδ thymocytes. The αβ thymocyte block is accompanied by massive apoptotic depletion of β-selected double-negative DN3 cells and premitotic arrest of CD4/CD8 double-positive cells. Although Smarca5-deficient αβ T cell precursors that survived apoptosis were able to undergo a successful TCRβ rearrangement, they exhibited a highly abnormal mRNA profile, including the persistent expression of CD44 and CD25 markers characteristic of immature cells. We also observed that the p53 pathway became activated in these cells and that a deficiency of p53 partially rescued the defect in thymus cellularity (in contrast to early B cells) of Smarca5-deficient mice. However, the activation of p53 was not primarily responsible for the thymocyte developmental defects observed in the Smarca5 mutants. Our results indicate that Smarca5 plays a key role in the development of thymocytes undergoing β-selection, γδ thymocytes, and also B cell progenitors by regulating the transcription of early differentiation programs.
Copyright © 2019 by The American Association of Immunologists, Inc.

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Year:  2019        PMID: 31068388      PMCID: PMC6548592          DOI: 10.4049/jimmunol.1801684

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  61 in total

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Authors:  Tian H Chi; Mimi Wan; Peggy P Lee; Koichi Akashi; Daniel Metzger; Pierre Chambon; Christopher B Wilson; Gerald R Crabtree
Journal:  Immunity       Date:  2003-08       Impact factor: 31.745

2.  Requirement for p53 and p21 to sustain G2 arrest after DNA damage.

Authors:  F Bunz; A Dutriaux; C Lengauer; T Waldman; S Zhou; J P Brown; J M Sedivy; K W Kinzler; B Vogelstein
Journal:  Science       Date:  1998-11-20       Impact factor: 47.728

3.  The OP9-DL1 system: generation of T-lymphocytes from embryonic or hematopoietic stem cells in vitro.

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4.  CD28 expression redefines thymocyte development during the pre-T to DP transition.

Authors:  T Kent Teague; Chibing Tan; Julie H Marino; Brenda K Davis; Ashlee A Taylor; Ryan W Huey; C Justin Van De Wiele
Journal:  Int Immunol       Date:  2010-03-04       Impact factor: 4.823

5.  Regulation of homologous recombination by RNF20-dependent H2B ubiquitination.

Authors:  Kyosuke Nakamura; Akihiro Kato; Junya Kobayashi; Hiromi Yanagihara; Shuichi Sakamoto; Douglas V N P Oliveira; Mikio Shimada; Hiroshi Tauchi; Hidekazu Suzuki; Satoshi Tashiro; Lee Zou; Kenshi Komatsu
Journal:  Mol Cell       Date:  2011-03-04       Impact factor: 17.970

6.  Dynamic transformations of genome-wide epigenetic marking and transcriptional control establish T cell identity.

Authors:  Jingli A Zhang; Ali Mortazavi; Brian A Williams; Barbara J Wold; Ellen V Rothenberg
Journal:  Cell       Date:  2012-04-13       Impact factor: 41.582

7.  Gene set enrichment analysis: a knowledge-based approach for interpreting genome-wide expression profiles.

Authors:  Aravind Subramanian; Pablo Tamayo; Vamsi K Mootha; Sayan Mukherjee; Benjamin L Ebert; Michael A Gillette; Amanda Paulovich; Scott L Pomeroy; Todd R Golub; Eric S Lander; Jill P Mesirov
Journal:  Proc Natl Acad Sci U S A       Date:  2005-09-30       Impact factor: 11.205

8.  Mutations in T-cell antigen receptor genes alpha and beta block thymocyte development at different stages.

Authors:  P Mombaerts; A R Clarke; M A Rudnicki; J Iacomini; S Itohara; J J Lafaille; L Wang; Y Ichikawa; R Jaenisch; M L Hooper
Journal:  Nature       Date:  1992-11-19       Impact factor: 49.962

9.  hCD2-iCre and Vav-iCre mediated gene recombination patterns in murine hematopoietic cells.

Authors:  Sabine Siegemund; Jovan Shepherd; Changchun Xiao; Karsten Sauer
Journal:  PLoS One       Date:  2015-04-17       Impact factor: 3.240

10.  Mouse BAZ1A (ACF1) is dispensable for double-strand break repair but is essential for averting improper gene expression during spermatogenesis.

Authors:  James A Dowdle; Monika Mehta; Elizabeth M Kass; Bao Q Vuong; Akiko Inagaki; Dieter Egli; Maria Jasin; Scott Keeney
Journal:  PLoS Genet       Date:  2013-11-07       Impact factor: 5.917

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  3 in total

1.  Long noncoding RNA lncMREF promotes myogenic differentiation and muscle regeneration by interacting with the Smarca5/p300 complex.

Authors:  Wei Lv; Wei Jiang; Hongmei Luo; Qian Tong; Xiaoyu Niu; Xiao Liu; Yang Miao; Jingnan Wang; Yiwen Guo; Jianan Li; Xizhen Zhan; Yunqing Hou; Yaxin Peng; Jian Wang; Shuhong Zhao; Zaiyan Xu; Bo Zuo
Journal:  Nucleic Acids Res       Date:  2022-10-14       Impact factor: 19.160

Review 2.  Interplay between cofactors and transcription factors in hematopoiesis and hematological malignancies.

Authors:  Zi Wang; Pan Wang; Yanan Li; Hongling Peng; Yu Zhu; Narla Mohandas; Jing Liu
Journal:  Signal Transduct Target Ther       Date:  2021-01-20

3.  Zinc finger protein Zfp335 controls early T-cell development and survival through β-selection-dependent and -independent mechanisms.

Authors:  Xin Wang; Anjun Jiao; Lina Sun; Wenhua Li; Biao Yang; Yanhong Su; Renyi Ding; Cangang Zhang; Haiyan Liu; Xiaofeng Yang; Chenming Sun; Baojun Zhang
Journal:  Elife       Date:  2022-02-03       Impact factor: 8.140

  3 in total

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