bioRxiv · 10.1101/2021.07.02.450924
Mitochondrial dysfunction triggers secretion of the immunosuppressive factor α-fetoprotein
Abstract
Signaling circuits crucial to systemic physiology are widespread, yet uncovering their molecular underpinnings remains a barrier to understanding the etiology of many metabolic disorders. Here, we identify a copper-linked signaling circuit activated by disruption of mitochondrial function in the murine liver or heart that results in atrophy of the spleen and thymus and causes a peripheral white blood cell deficiency. We demonstrate that the leukopenia is caused by -fetoprotein, which requires copper and the cell surface receptor CCR5 to promote white blood cell death. We further show that -fetoprotein expression is upregulated in several cell types upon inhibition of oxidative phosphorylation, including a muscle cell model of Barth syndrome. Collectively, our data argue that -fetoprotein secreted by bioenergetically stressed tissue suppresses the immune system, an effect which may explain the recurrent infections that are observed in a subset of mitochondrial diseases or in other disorders with mitochondrial involvement.
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Jett, K. A., Baker, Z. N., Hossain, A., Boulet, A., Cobine, P. A., Ghosh, S., Ng, P., Yilmaz, O., Barretto, K., DeCoteau, J., Mochoruk, K., Ioannou, G., Savard, C., Yuan, S., Lowden, C., Kim, B.-E., Cheng, H.-Y. M., Battersby, B. J., Gohil, V. M. M., Leary, S. C.. 2021-07-03. Mitochondrial dysfunction triggers secretion of the immunosuppressive factor α-fetoprotein. https://doi.org/10.1101/2021.07.02.450924
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