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HIV-2/SIV Vpx targets a novel functional domain of STING to selectively inhibit cGAS-STING-mediated NF-kB signalling

机译:HIV-2 / SIV VPX靶向一种新型功能结构域,用于选择性地抑制CGAS-STING介导的NF-KB信号传导

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摘要

Innate immunity is the first line of host defence against pathogens. Suppression of innate immune responses is essential for the survival of all viruses. However, the interplay between innate immunity and HIV/SIV is only poorly characterized. We havediscovered Vpx as a novel inhibitor of innate immune activation that associates with STING signalosomes and interferes with the nuclear translocation of NF-kB and the induction of innate immune genes. This new function of Vpx could be separated from itsrole in mediating degradation of the antiviral factor SAMHD1, and is conserved among diverse HIV-2/SIV Vpx. Vpx selectively suppressed cGAS-STING-mediated nuclear factor-icB signalling. Furthermore, Vpx and Vpr had complementary activities against cGAS-STING activity. Since SIVMAC lacking both Vpx and Vpr was less pathogenic than SIV deficient for Vpr or Vpx alone, suppression of innate immunity by HIV/SIV is probably a key pathogenic determinant, making it a promising target for intervention.
机译:先天免疫是针对病原体的第一行主体防御。抑制先天免疫应答对于所有病毒的存活至关重要。然而,先天免疫和HIV / SIV之间的相互作用仅表现不佳。我们Haveded VPX作为先天免疫激活的新型抑制剂,其与刺绣信号组织相关,并干扰NF-KB的核易位和先天免疫基因的诱导。 VPX的这种新功能可以与橡皮油中的抗病毒因子SamHD1的降解分离,并在不同的HIV-2 / SIV VPX中保守。 VPX选择性地抑制CGAS-Sting介导的核因子-CCB信号传导。此外,VPX和VPR对CGAS-Sting活性进行了互补的活动。由于SIVMAC缺乏VPX和VPR的致病性缺乏VPR或VPX的致病性,因此通过HIV / SIV抑制先天免疫可能是一个关键的致病决定簇,使其成为干预的有希望的目标。

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