4.8 Article

Cytoplasmic RNA quality control failure engages mTORC1-mediated autoinflammatory disease

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 132, 期 2, 页码 -

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AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI146176

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资金

  1. National Institutes of Health [AI153576, AR079147, AR074846, T32 AR065969]
  2. Dermatology Foundation

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Inborn errors of nucleic acid metabolism often cause aberrant activation of nucleic acid sensing pathways, leading to autoimmune or autoinflammatory diseases. This study demonstrates the physiological function of SKIV2L in mammals. Skiv2l deficiency disrupts the homeostasis of epidermis and T cells, resulting in skin inflammation and hair abnormality. SKIV2L loss activates the mTORC1 pathway and drives autoinflammatory disease.
Inborn errors of nucleic acid metabolism often cause aberrant activation of nucleic acid sensing pathways, leading to autoimmune or autoinflammatory diseases. The SKIV2L RNA exosome is cytoplasmic RNA degradation machinery that was thought to be essential for preventing the self-RNA-mediated interferon (IFN) response. Here, we demonstrate the physiological function of SKIV2L in mammals. We found that Skiv2l deficiency in mice disrupted epidermal and T cell homeostasis in a cell-intrinsic manner independently of IFN. Skiv2l-deficient mice developed skin inflammation and hair abnormality, which were also observed in a SKIV2L-deficient patient. Epidermis-specific deletion of Skiv2l caused hyperproliferation of keratinocytes and disrupted epidermal stratification, leading to impaired skin barrier with no appreciable IFN activation. Moreover, Skiv2l-deficient T cells were chronically hyperactivated and these T cells attacked lesional skin as well as hair follicles. Mechanistically, SKIV2L loss activated the mTORC1 pathway in both keratinocytes and T cells. Both systemic and topical rapamycin treatment of Skiv2l-deficient mice ameliorated epidermal hyperplasia and skin inflammation. Together, we demonstrate that mTORC1, a classical nutrient sensor, also senses cytoplasmic RNA quality control failure and drives autoinflammatory disease. We also propose SKIV2L-associated trichohepatoenteric syndrome (THES) as a new mTORopathy for which sirolimus may be a promising therapy.

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