AI Article Synopsis

  • The study investigates how the absence of the protein ASCIZ affects the survival of developing B lymphocytes in mice, leading to decreased B cell numbers.
  • It reveals that this loss of B cells is not due to issues with DNA damage response or BCR development, but rather linked to reduced levels of the transcriptional target DYNLL1.
  • Importantly, the research shows that overexpressing DYNLL1 or deleting the proapoptotic protein Bim can reverse the B cell deficiency caused by the lack of ASCIZ, highlighting ASCIZ's role in B cell survival.

Article Abstract

Developing B lymphocytes expressing defective or autoreactive pre-B or B cell receptors (BCRs) are eliminated by programmed cell death, but how the balance between death and survival signals is regulated to prevent immunodeficiency and autoimmunity remains incompletely understood. In this study, we show that absence of the essential ATM (ataxia telangiectasia mutated) substrate Chk2-interacting Zn(2+)-finger protein (ASCIZ; also known as ATMIN/ZNF822), a protein with dual functions in the DNA damage response and as a transcription factor, leads to progressive cell loss from the pre-B stage onwards and severely diminished splenic B cell numbers in mice. This lymphopenia cannot be suppressed by deletion of p53 or complementation with a prearranged BCR, indicating that it is not caused by impaired DNA damage responses or defective V(D)J recombination. Instead, ASCIZ-deficient B cell precursors contain highly reduced levels of DYNLL1 (dynein light chain 1; LC8), a recently identified transcriptional target of ASCIZ, and normal B cell development can be restored by ectopic Dynll1 expression. Remarkably, the B cell lymphopenia in the absence of ASCIZ can also be fully suppressed by deletion of the proapoptotic DYNLL1 target Bim. Our findings demonstrate a key role for ASCIZ in regulating the survival of developing B cells by activating DYNLL1 expression, which may then modulate Bim-dependent apoptosis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3428950PMC
http://dx.doi.org/10.1084/jem.20120785DOI Listing

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