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Armbrust, M.

Publications and source records attributed to Armbrust, M..

2 recordsLinked to original sources

Targeting neutrophil signaling networks in immune complex-mediated autoimmune disease

Fragment crystallizable gamma receptor (Fc{gamma}R)-induced signaling is a crucial process that determines the cellular response to immune complexes (IC) in autoimmune diseases. In several diseases including pemphigoid diseases (PD), such as epidermolysis bullosa acquisita (EBA), or rheumatoid arthritis (RA), neutrophils are prominently involved as effector cells, while others such as immune thrombocytopenia (ITP) are independent of neutrophils. At the same time, most diseases are commonly treated by broad-range immunosuppression accompanied by severe risk for adverse effects. Signal transduction inhibitors (STIs) have been successfully applied in cancer therapy. However, their use in autoimmune diseases is an emerging, but so far understudied potential treatment avenue. Therefore, we screened a target-selective compound library consisting of 155 STIs in a neutrophil-based assay and conducted a multiplex kinase activity profiling with IC-stimulated neutrophils. Thus, we found novel potential therapeutic targets that were validated both in vitro in functional neutrophil assays and in vivo in murine models of EBA Here, we demonstrate that both systemic and topical treatment with several individual STIs is effective in a prophylactic approach in these models. Furthermore, therapeutic treatment with the BTK inhibitor ibrutinib in the immunization-induced EBA model reduced disease severity by approximately 85 % and showed efficacy in additional experimental models of EBA, arthritis, and ITP. Together, the present study contributes to the elucidation of Fc{gamma}R-dependent signaling in neutrophils and identifies multiple novel promising treatment options including inhibition of PLC, PDK-1, PKC, p38, DNA-PK, KSP, c-Met, TBK-1 and BTK for IC-mediated autoimmune diseases.

immunology↗

CasDinG is an ATP-dependent 5'-3' DNA helicase with accessory domains essential for type IV CRISPR immunity

CRISPR-associated DinG protein (CasDinG) is essential to type IV-A CRISPR function. However, the enzymatic activities of CasDinG are unknown. Here we demonstrate that CasDinG from Pseudomonas aeruginosa strain 83 is an ATP- and metal-dependent 5-3 DNA helicase. The crystal structure of CasDinG reveals a helicase core of two RecA-like domains with three accessory domains (N-terminal, arch, and vestigial FeS). To examine the in vivo function of these CasDinG domains, we first identified the preferred PAM sequence (5-GNAWN-3 on the 5-side of the target) with a plasmid library containing all combinations of the five nucleotides upstream of the target sequence. Plasmid clearance assays (using a 5-GGAAA-3 PAM) with CasDinG domain mutants demonstrated the vFeS and arch accessory domains are both essential for type IV immunity. These results provide a needed structural and biochemical framework for understanding the type IV-A CRISPR system.

biochemistry↗