bioRxiv · 10.1101/691097
Transcription factor NF-κB in a basal metazoan, the sponge, has conserved and unique sequences, activities, and regulation
Abstract
Biological and biochemical functions of immunity transcription factor NF-{kappa}B in basal metazoans are largely unknown. Herein, we characterize transcription factor NF-{kappa}B from the demosponge Amphimedon queenslandica (Aq), in the phylum Porifera. Structurally and phylogenetically, the Aq-NF-{kappa}B protein is most similar to NF-{kappa}B p100 and p105 among vertebrate proteins, with an N-terminal DNA-binding/dimerization domain, a C-terminal Ankyrin (ANK) repeat domain, and a DNA binding-site profile more similar to human NF-{kappa}B proteins than Rel proteins. Aq-NF-{kappa}B also resembles the mammalian NF-{kappa}B protein p100 in that C-terminal truncation results in translocation of Aq-NF-{kappa}B to the nucleus and increases its transcriptional activation activity. Overexpression of a human or sea anemone I{kappa}B kinase (IKK) can induce C-terminal processing of Aq-NF-{kappa}B in vivo, and this processing requires C-terminal serine residues in Aq-NF-{kappa}B. Unlike human NF-{kappa}B p100, however, the C-terminal sequences of Aq-NF-{kappa}B do not effectively inhibit its DNA-binding activity when expressed in human cells. Tissue of another demosponge, a black encrusting sponge, contains NF-{kappa}B site DNA-binding activity and an NF-{kappa}B protein that appears mostly processed and in the nucleus of cells. NF-{kappa}B DNA-binding activity and processing is increased by treatment of sponge tissue with LPS. By transcriptomic analysis of A. queenslandica we identified likely homologs to many upstream NF-{kappa}B pathway components. These results present a functional characterization of the most ancient metazoan NF-{kappa}B protein to date, and show that many characteristics of mammalian NF-{kappa}B are conserved in sponge NF-{kappa}B, but the mechanism by which NF-{kappa}B functions and is regulated in the sponge may be somewhat different.
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Williams, L. M., Inge, M. M., Mansfield, K. M., Rasmussen, A., Afghani, J., Agrba, M., Albert, C., Andersson, C., Babaei, M., Bagdasaryants, A., Bonilla, A., Browne, A., Carpenter, S., Chen, T., Christie, B., Cyr, A., Dam, K., Dulock, N., Erdene, G., Esau, L., Esonwune, S., Hanchate, A., Huang, X., Jennings, T., Kasabwala, A., Kehoe, L., Kobayashi, R., Lee, M., LeVan, A., Liu, Y., Murphy, E., Nambiar, A., Olive, M., Patel, D., Pavesi, F., Petty, C., Samofalova, Y., Sanchez, S., Stejskal, C., Tang, Y., Yapo, A., Cleary, J. P., Yunes, S. A., Siggers, T., Gilmore, T. D.. 2019-07-02. Transcription factor NF-κB in a basal metazoan, the sponge, has conserved and unique sequences, activities, and regulation. https://doi.org/10.1101/691097
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