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Bick, F.

Publications and source records attributed to Bick, F..

2 recordsLinked to original sources

The Plasmodium falciparum CCCH zinc finger protein MD3 regulates male gametocytogenesis through its interaction with RNA-binding proteins

Malaria transmission to mosquitoes is dependent on the formation of gametocytes. When fully matured, gametocytes are able to transform into gametes in the mosquitos midgut, a process accompanied with their egress from the enveloping erythrocyte. Gametocyte maturation and gametogenesis require a well-coordinated gene expression programme that involves a wide spectrum of regulatory proteins, ranging from histone modifiers to transcription factors to RNA-binding proteins. Here, we investigated the role of the CCCH-zinc finger protein MD3 in P. falciparum gametocytogenesis. MD3 was originally identified by us as an epigenetically regulated protein of immature gametocytes and recently shown to be involved in male development in a barcode-based screen in P. berghei. We here show that MD3 is mainly present in the cytoplasm of immature male P. falciparum gametocytes. Parasites deficient of MD3 are impaired in gametocyte maturation and male gametocyte exflagellation. BioID analysis in combination with co-immunoprecipitation assays unveiled an interaction network of MD3 with RNA-binding proteins like PABP1 and ALBA3, with translational initiators, regulators and repressors like elF4G, PUF1, NOT1 and CITH, and with other regulators of gametocytogenesis, including ZNF4, MD1 and GD1. We conclude that MD3 is part of a regulator complex crucial for post-transcriptional fine-tuning of male gametocytogenesis.

microbiology↗

Structural basis for the mechanism and antagonism of receptor signaling mediated by Interleukin-9 (IL-9)

Interleukin-9 (IL-9) is the hallmark cytokine in Th9 immunity and is also central to Innate Lymphocyte 2 (ILC2) biology. Furthermore, receptor signaling mediated by IL-9 has been linked to inflammatory and autoimmune diseases, and cancer. Despite its functional pleiotropy, the structure-function landscape of IL-9 had remained enigmatic. Here, we show via a combination of X-ray crystallography and NMR that human IL-9 adopts a helical bundle fold with unprecedented structural features among helical cytokines, including five disulfide bridges. Binding of IL-9 to the interdomain junction of IL-9R results in marked structural changes on the opposite face of IL-9 that prime the binary complex for recruiting the common gamma chain ({gamma}c) for signaling. Surprisingly, this tripartite cytokine-receptor assembly displays a markedly lower affinity than the IL-9: IL-9R complex, which we trace to distinct features of IL-9R that might destabilize the ternary complex. Furthermore, we developed monoclonal antibodies that antagonize IL-9 activity by sterically competing for the binding footprint of IL-9R. Collectively, we here provide a structural and mechanistic blueprint to facilitate interrogation and modulation of pleiotropic signaling outputs of IL-9 in physiology and disease.

immunology↗