Khoir Amaliin, Mansaku Hirai, Salma Aktar, Tetsuo Koshizuka, Yasuko Mori, Jun Arii
Innate immune and cellular stress responses triggered by infection must be transient and tightly controlled to restrain pathogens without harming the host. Herpesvirus infection induces NF-κB signaling through multiple viral and host inputs, yet how this response is terminated during productive infection remains unclear. Here, we identify a host-regulated timing mechanism that limits infection-associated NF-κB signaling during human herpesvirus 6A (HHV-6A) infection. The HHV-6A tegument protein U14 has the intrinsic capacity to induce NF-κB signaling and contributes to infection-associated NF-κB responses. The nuclear adaptor PDLIM2 associates with U14 and couples proteasome-dependent U14 turnover to phospho-p65 (Ser536) downregulation and NF-κB termination. CRISPRi-mediated PDLIM2 knockdown prolonged phospho-p65 (Ser536) signaling and nuclear U14 accumulation, enhanced antiviral and DNA damage-associated programs, increased γH2AX-marked nuclear stress, and reduced extracellular HHV-6A genome copies. Conversely, U14 knockdown attenuated viral gene expression, extracellular viral genome accumulation, and NF-κB-linked inflammatory gene induction. Collectively, these findings define the U14-PDLIM2 axis as a host-regulated mechanism that coordinates NF-κB termination with control of nuclear stress to support productive HHV-6A infection.