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Increased circulating fibronectin, depletion of natural IgM and heightened EBV, HSV-1 reactivation in ME/CFS and long COVID

Liu, Z.; Hollmann, C.; Kalanidhi, S.; Grothey, A.; Keating, S.; Mena-Palomo, I.; Lamer, S.; Schlosser, A.; Kaiping, A.; Scheller, C.; Sotzny, F.; Horn, A.; Nuernberger, C.; Cejka, V.; Afshar, B.; Bahmer, T.; Schreiber, S.; Janne Vehreschild, J.; Milljukov, O.; Schaefer, C.; Kretzler, L.; Keil, T.; Reese, J.-P.; Eichner, F. A.; Schmidbauer, L.; Heuschmann, P. U.; Stoerk, S.; Morbach, C.; Riemekasten, G.; Beyersdorf, N.; Scheibenbogen, C.; Naviaux, R. K.; Williams, M.; Ariza, M. E.; Prusty, B. K.

2023-06-29 infectious diseases
10.1101/2023.06.23.23291827 medRxiv
Show abstract

Myalgic Encephalomyelitis/ Chronic Fatigue syndrome (ME/CFS) is a complex, debilitating, long-term illness without a diagnostic biomarker. ME/CFS patients share overlapping symptoms with long COVID patients, an observation which has strengthened the infectious origin hypothesis of ME/CFS. However, the exact sequence of events leading to disease development is largely unknown for both clinical conditions. Here we show antibody response to herpesvirus dUTPases, particularly to that of Epstein-Barr virus (EBV) and HSV-1, increased circulating fibronectin (FN1) levels in serum and depletion of natural IgM against fibronectin ((n)IgM-FN1) are common factors for both severe ME/CFS and long COVID. We provide evidence for herpesvirus dUTPases-mediated alterations in host cell cytoskeleton, mitochondrial dysfunction and OXPHOS. Our data show altered active immune complexes, immunoglobulin-mediated mitochondrial fragmentation as well as adaptive IgM production in ME/CFS patients. Our findings provide mechanistic insight into both ME/CFS and long COVID development. Finding of increased circulating FN1 and depletion of (n)IgM-FN1 as a biomarker for the severity of both ME/CFS and long COVID has an immediate implication in diagnostics and development of treatment modalities.

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