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Holzer, A. S.

Publications and source records attributed to Holzer, A. S..

2 recordsLinked to original sources

Immunological memory in a teleost fish: common carp IgM+ B cells differentiate into memory and plasma cells

From ancient cold-blooded fishes to mammals, all vertebrates are protected by adaptive immunity, and retain immunological memory. Although immunologists can demonstrate these phenomena in all fish, the responding cells remain elusive for lack of defining markers and tools to study them. Fundamentally, we posited that it is longevity that defines a memory cell like how antibody production defines a plasma cell. We infected the common carp with Sphaerospora molnari, a cnidarian parasite which causes seasonal outbreaks to which no vaccine is available. B cells proliferated and expressed gene signatures of differentiation. Despite a half-year gap between EdU labeling and sampling, B cells retained the thymidine analogue, suggesting that these are at least six-month-old resting memory cells stemming from proliferating precursors. Additionally, we identified a lymphoid organ-resident population expressing exceptional levels of IgM as plasma cells. Thus, teleost fish produce the lymphocytes key to vaccination success and long-term disease protection, and immunological memory is universal and universally demonstrable.

immunology↗

Minicollagens play the governing role in polar capsule formation in parasitic cnidarians, the Myxozoa

Minicollagens are major structural components in the biogenesis of nematocysts in Cnidaria. Sequence mining and recent proteomic analysis of polar capsules, homologues of cnidarian nematocysts, have confirmed the presence of minicollagens in this evolutionarily ancient cnidarian endoparasitic group. Nonetheless, the role of nematocyst-associated proteins in polar capsule morphogenesis has never been studied in myxozoans. Here, we report the gene expression of three myxozoan minicollagens, ncol-1, ncol-3, and the recently identified ncol-5, during the intrapiscine development of Myxidium lieberkuehni, the myxozoan parasite of Northern pike Esox lucius. Moreover, we determined the abundance and localisation of Ncol-1 and Ncol-5 proteins in the developing myxozoan stages by western blotting and by immunofluorescence and immunogold electron microscopy. We found that expression of minicollagens was spatiotemporally restricted to developing polar capsules in sporogonic stages. Intriguingly, Ncol-1 and Ncol-5 were localised as major components of the polar capsule wall and polar tubule. These results support the common origin of nematocysts and myxozoan polar capsules. Furthermore, our findings have practical implications for a more accurate identification of developmental stages of myxozoan parasites.

developmental biology↗