Dynamic regulation of chromatin organizer SATB1 via TCR-induced alternative promoter switch during T-cell development

Author:

Patta Indumathi1,Madhok Ayush1,Khare Satyajeet12,Gottimukkala Kamalvishnu P3,Verma Anjali3,Giri Shilpi4,Dandewad Vishal4,Seshadri Vasudevan4,Lal Girdhari4,Misra-Sen Jyoti3,Galande Sanjeev1ORCID

Affiliation:

1. Centre of Excellence in Epigenetics, Department of Biology, Indian Institute of Science Education and Research, Pune, Maharashtra 411008, India

2. Symbiosis School of Biological Sciences, Pune, Maharashtra 412115, India

3. National Institute on Aging, NIH and School of Medicine Immunology Graduate Program, Johns Hopkins University, Baltimore, MD 21224, USA

4. National Centre for Cell Science, Ganeshkhind, Pune, Maharashtra 411007, India

Abstract

Abstract The chromatin organizer SATB1 is highly enriched in thymocytes and is essential for T-cell development. Although SATB1 regulates a large number of genes important for T-cell development, the mechanism(s) regulating expression of SATB1 during this process remain elusive. Using chromatin immune precipitation-seq-based occupancy profiles of H3K4me3 and H3Kme1 at Satb1 gene locus, we predicted four different alternative promoters of Satb1 in mouse thymocytes and characterized them. The expression of Satb1 transcript variants with distinct 5′ UTRs occurs in a stage-specific manner during T-cell development and is dependent on TCR signaling. The observed discrepancy between the expression levels of SATB1 mRNA and protein in developing thymocytes can be explained by the differential translatability of Satb1 transcript variants as confirmed by polysome profiling and in vitro translation assay. We show that Satb1 alternative promoters exhibit lineage-specific chromatin accessibility during T-cell development from progenitors. Furthermore, TCF1 regulates the Satb1 P2 promoter switch during CD4SP development, via direct binding to the Satb1 P2 promoter. CD4SP T cells from TCF1 KO mice exhibit downregulation of P2 transcript variant expression as well as low levels of SATB1 protein. Collectively, these results provide unequivocal evidence toward alternative promoter switch-mediated developmental stage-specific regulation of SATB1 in thymocytes.

Funder

Department of Biotechnology, Ministry of Science and Technology

National Institutes of Health

CSIR Fellowships

IISER Pune

Science and Engineering Research Board

DBT

SERB

Publisher

Oxford University Press (OUP)

Subject

Genetics

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3. Characterization of thymus-seeding precursor cells from mouse bone marrow;Mori;Blood,2001

4. T-cell development and the CD4-CD8 lineage decision;Germain;Nat. Rev. Immunol.,2002

5. The thymus selects the useful, neglects the useless and destroys the harmful;von Boehmer;Immunol. Today,1989

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