I-152, a supplier of N-acetyl-cysteine and cysteamine, inhibits immunoglobulin secretion and plasma cell maturation in LP-BM5 murine leukemia retrovirus-infected mice by affecting the unfolded protein response

Excessive production of immunoglobulins (Ig) causes endoplasmic reticulum (ER) stress and triggers the unfolded protein response (UPR). Hypergammaglobulinemia and lymphadenopathy are hallmarks of murine AIDS that develops in mice infected with the LP-BM5 murine leukemia retrovirus complex. In these...

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Veröffentlicht in:Biochimica et biophysica acta. Molecular basis of disease 2020-12, Vol.1866 (12), p.165922, Article 165922
Hauptverfasser: Fraternale, Alessandra, Zara, Carolina, Di Mambro, Tomas, Manuali, Elisabetta, Genovese, Domenica Anna, Galluzzi, Luca, Diotallevi, Aurora, Pompa, Andrea, De Marchis, Francesca, Ambrogini, Patrizia, Cesarini, Erica, Luchetti, Francesca, Smietana, Michaël, Green, Kathy, Bartoccini, Francesca, Magnani, Mauro, Crinelli, Rita
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Sprache:eng
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Zusammenfassung:Excessive production of immunoglobulins (Ig) causes endoplasmic reticulum (ER) stress and triggers the unfolded protein response (UPR). Hypergammaglobulinemia and lymphadenopathy are hallmarks of murine AIDS that develops in mice infected with the LP-BM5 murine leukemia retrovirus complex. In these mice, Th2 polarization and aberrant humoral response have been previously correlated to altered intracellular redox homeostasis. Our goal was to understand the role of the cell's redox state in Ig secretion and plasma cell (PC) maturation. To this aim, LP-BM5-infected mice were treated with I-152, an N-acetyl-cysteine and cysteamine supplier. Intraperitoneal I-152 administration (30 μmol/mouse three times a week for 9 weeks) decreased plasma IgG and increased IgG/Syndecan 1 ratio in the lymph nodes where IgG were in part accumulated within the ER. PC containing cytoplasmic inclusions filled with IgG were present in all animals, with fewer mature PC in those treated with I-152. Infection induced up-regulation of signaling molecules involved in the UPR, i.e. CHAC1, BiP, sXBP-1 and PDI, that were generally unaffected by I-152 treatment except for PDI and sXBP-1, which have a key role in protein folding and PC maturation, respectively. Our data suggest that one of the mechanisms through which I-152 can limit hypergammaglobulinemia in LP-BM5-infected mice is by influencing IgG folding/assembly as well as secretion and affecting PC maturation. •I-152, a pro-glutathione molecule, inhibits IgG production in an in vivo model.•I-152 affects the function and maturation of PC.•I-152 interferes with IgG folding/assembly.•I-152 mainly influences the UPR signaling branch IRE1α-XBP1.•The redox state has a role in the maturation of PC.
ISSN:0925-4439
1879-260X
DOI:10.1016/j.bbadis.2020.165922