bioRxiv · 10.64898/2025.12.23.696137
Secreted protein methyltransferase METTL9 catalyzes Nπ-histidine methylation of extracellular plasma proteins
Abstract
Post-translational modifications (PTMs) of proteins alter their biophysical properties, thus affecting their activity, localization and interactions. These reactions are principally intracellular events; however, to date, only phosphorylation has been shown to occur within the extracellular space. Here, we identified METTL9 as the first secreted methyltransferase responsible for N{pi}-histidine methylation. METTL9 undergoes N-linked glycosylation, thereby forming dimers via disulfide bonds. Using a split-luciferase complementary assay, we revealed that N-glycosylated METTL9 is secreted extracellularly via the ER-Golgi pathway. Endogenous METTL9 is highly expressed in HL60 cells during neutrophil-like differentiation and secreted extracellularly. METTL9 catalyzes N{pi}-methylhistidine formation in plasma proteins, in which the thyroxine transporter transthyretin (TTR) and copper transporter ceruloplasmin are identified as substrates for methylation in vitro. Both methylations occur at the His-x-His motif, a recognition sequence for METTL9, and TTR methylation decreases its binding affinity to zinc. Our results establish that histidine methylation is the second extracellular PTM, following phosphorylation.
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Ikeda, N., Daitoku, H., Odate, N., Sekiguchi, N., Tsukamoto, R., Kondo, R., Han, S.-i., Motomura, K., Kako, K., Fukamizu, A.. 2025-12-23. Secreted protein methyltransferase METTL9 catalyzes Nπ-histidine methylation of extracellular plasma proteins. https://doi.org/10.64898/2025.12.23.696137
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