Summary
Although the BBAP E3 ligase and its binding partner, BAL, are overexpressed in chemotherapy-resistant lymphomas, the role of these proteins in DNA damage responses remains undefined. Since BAL proteins modulate promoter-coupled transcription and contain structural motifs associated with chromatin remodeling and DNA repair, we reasoned that the BBAP E3 ligase might target nucleosomal proteins. Herein, we demonstrate that BBAP selectively monoubiquitylates histone H4 lysine 91 and protects cells exposed to DNA damaging agents. Disruption of BBAP-mediated monoubiquitylation of histone H4K91 is associated with the loss of chromatin-associated H4K20 methylase, mono- and dimethyl H4K20, and a delay in the kinetics of 53BP1 foci formation at sites of DNA damage. Since 53BP1 localizes to DNA damage sites, in part, via an interaction with dimethyl H4K20, these data directly implicate BBAP in the monoubiquitylation and additional post-translational modification of histone H4 and an associated DNA damage response.
Identification of factors that regulate production of proinflammatory cytokines may provide insight into mechanisms governing lung inflammation. One potential regulatory factor highly expressed in inflamed tissues is fibronectin (FN). To determine the potential effects of FN on interleukin (IL)-1 beta production, we exposed human peripheral blood mononuclear cells to soluble FN. This treatment resulted in the accumulation of IL-1 beta mRNA and enhancement of IL-1 beta protein synthesis and secretion. This effect was dose dependent and appeared to be mediated by the integrin alpha 5 beta 1. Treatment with FN also increased production of IL-1 receptor antagonist (IL-1ra), a naturally occurring inhibitor of IL-1 function. However, the stimulatory effect of FN on IL-1ra production was abolished by costimulation with type I collagen. We conclude that the increased deposition of FN in injured tissues may enhance the expression of IL-1 beta mRNA and augment the production and release of IL-1 beta protein by mononuclear cells. Differential expression of IL-1 beta and IL-1ra resulting in a high IL-1 beta-to-IL-1ra ratio in response to mixed matrices containing FN and type I collagen may be an important regulatory point in inflammation.
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