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Katiki, M.

Publications and source records attributed to Katiki, M..

2 recordsLinked to original sources

Butyrophilin 2A2 promotes T cell immunoregulation by enhancing CD45 phosphatase activity within the immune synapse

B7 costimulatory family member Butyrophilin 2A2 (BTN2A2) is predominantly expressed by antigen presenting cells and regulates T cell immunity, but molecular mechanisms are unclear. Using immunoblots analyzing TCR-initiated signaling intermediaries, co-immunoprecipitation studies, confocal microscopy, structural modeling-guided mutational analyses, and microscale thermophoresis, we demonstrate that BTN2A2 directly interacts with CD45RO, resulting in CD45 retention within the immune synapse during TCR activation. Recombinant BTN2A2 increased murine CD4+Foxp3+ regulatory T cells (Treg) and reduced T helper 17 (Th17) cells in vitro through mechanisms dependent on CD45 phosphatase activity. BTN2A2 treatment reduced clinical expression of two murine autoimmune disease models and increased Treg/Th17 ratios. Analyses of BTN2A2-deficient animals showed exacerbated disease associated with reduced Treg/Th17 ratios. Addition of BTN2A2 to human mixed lymphocyte responses similarly enhanced human Treg and suppressed Th17 cells and was CD45 phosphatase dependent. Together, our studies identify BTN2A2 as a physiological CD45RO ligand that enhances CD45 phosphatase activity in murine and human T cells, providing mechanisms for BTN2A2-mediated amelioration of autoimmunity. SummaryButyrophilin 2A2 ameliorates autoimmunity by binding to CD45RO on activated T cell surfaces leading to dampened TCR signaling which in turn leads to expansion of T regulatory cells and reduction of Th17 differentiation.

immunology↗

The homeodomain drives favorable DNA binding energetics of prostate cancer target ONECUT2

The ONECUT transcription factors feature a CUT and a homeodomain, evolutionarily conserved elements that bind DNA cooperatively, but the process remains mechanistically enigmatic. Using an integrative DNA binding analysis of ONECUT2, a driver of aggressive prostate cancer, we show that the homeodomain energetically stabilizes the ONECUT2-DNA complex through allosteric modulation of CUT. Further, evolutionarily conserved base-interactions in both the CUT and homeodomain are necessary for the favorable thermodynamics. We have identified a novel arginine pair unique to the ONECUT family homeodomain that can adapt to DNA sequence variations. Base interactions in general, including by this arginine pair, are critical for optimal DNA binding and transcription in a prostate cancer model. These findings provide fundamental insights into DNA binding by CUT-homeodomain proteins with potential therapeutic implications. One-Sentence SummaryBase-specific interactions regulate homeodomain-mediated stabilization of DNA binding by the ONECUT2 transcription factor.

biophysics↗