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[Preprint]. 2023 Apr 18:2023.04.14.536934. [Version 3] doi: 10.1101/2023.04.14.536934

An Aging-Susceptible Circadian Rhythm Controls Cutaneous Antiviral Immunity

Stephen Kirchner, Vivian Lei, Paul Kim, Meera Patel, Jessica Shannon, David Corcoran, Dalton Hughes, Diana Waters, Kafui Dzirasa, Detlev Erdmann, Jörn Coers, Amanda MacLeod, Jennifer Y Zhang
PMCID: PMC10153172  PMID: 37131751

ABSTRACT

Aged skin is prone to viral infections, but the mechanisms responsible for this immunosenescent immune risk are unclear. We observed that aged murine and human skin expressed reduced antiviral proteins (AVPs) and circadian regulators including Bmal1 and Clock. Bmal1 and Clock were found to control rhythmic AVP expression in skin and such circadian-control of AVPs was diminished by disruption of immune cell interleukin 27 signaling and deletion of Bmal1/Clock genes in mouse skins, as well as siRNA-mediated knockdown of CLOCK in human primary keratinocytes. We found that treatment of circadian enhancing agents, nobiletin and SR8278, reduced infection of herpes simplex virus 1 (HSV1) in epidermal explants and human keratinocytes in a Bmal1/Clock-dependent manner. Circadian enhancing treatment also reversed susceptibility of aging murine skin and human primary keratinocytes to viral infection. These findings reveal an evolutionarily conserved and age-sensitive circadian regulation of cutaneous antiviral immunity, underscoring circadian restoration as an antiviral strategy in aging populations.

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