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Human intracellular ISG15 prevents interferon-alpha/beta over-amplification and auto-inflammation

Zhang Xianqin; Bogunovic Dusan*; Payelle Brogard Beatrice; Francois Newton Veronique; Speer Scott D; Yuan Chao; Volpi Stefano; Li Zhi; Sanal Ozden; Mansouri Davood; Tezcan Ilhan; Rice Gillian I; Chen Chunyuan; Mansouri Nahal; Mahdaviani Seyed Alireza; Itan Yuval; Boisson Bertrand; Okada Satoshi; Zeng Lu; Wang Xing; Jiang Hui; Liu Wenqiang; Han Tiantian; Liu Delin; Ma Tao; Wang Bo; Liu Mugen; Liu Jing Yu; Wang Qing K; Yalnizoglu Dilek; Radoshevich Lilliana
SCI
中南大学; 深圳华大基因研究院; 空

摘要

Intracellular ISG15 is an interferon (IFN)-alpha/beta-inducible ubiquitin-like modifier which can covalently bind other proteins in a process called ISGylation; it is an effector of IFN-alpha/beta-dependent antiviral immunity in mice(1-4). We previously published a study describing humans with inherited ISG15deficiency but without unusually severe viral diseases(5). We showed that these patients were prone to mycobacterial disease and that human ISG15 was non-redundant as an extracellular IFN-gamma-inducing molecule. We show here that ISG15-deficient patients also display unanticipated cellular, immunological and clinical signs of enhanced IFN-alpha/beta immunity, reminiscent of the Mendelian autoinflammatory interferonopathies Aicardi-Goutieres syndrome and spondyloenchondrodysplasia(6-9). We further show that an absence of intracellular ISG15 in the patients' cells prevents the accumulation of USP18(10,11), a potent negative regulator of IFN-alpha/beta signalling, resulting in the enhancement and amplification of IFN-alpha/beta responses. Human ISG15, therefore, is not only redundant for antiviral immunity, but is a key negative regulator of IFN-alpha/beta immunity. In humans, intracellular ISG15 is IFN-alpha/beta-inducible not to serve as a substrate for ISGylation-dependent antiviral immunity, but to ensure USP18-dependent regulation of IFN-alpha/beta and prevention of IFN-alpha/beta-dependent autoinflammation.

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