Virus infection induces stochastic activation of the interferon-β gene. Three previously identified Alu-like DNA elements called NRCs (NF-κB reception centers) function by capturing and delivering NF-κB to the IFNB1 enhancer via stochastic interchromosomal interactions. We show that the transcription factor ThPOK binds cooperatively with NF-κB to NRCs and mediates their physical proximity with the IFNB1 gene via its ability to oligomerize when bound to DNA. ThPOK knockdown significantly decreased the frequency of interchromosomal interactions, NF-κB DNA binding to the IFNB1 enhancer, and virus-induced IFNB1 gene activation. We also demonstrate that cooperative DNA binding between ThPOK and NF-κB on the same face of the double DNA helix is required for interchromosomal interactions and distinguishes NRCs from various other Alu elements bearing κB sites. These studies show how DNA binding cooperativity of stereospecifically aligned transcription factors provides the necessary ultrasensitivity for the all-or-none stochastic cell responses to virus infection.
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AbstractThe sustainability and the effects of human pressures on Omalos Mediterranean Temporary Pond (MTP), Chanea, Greece was assessed. The caesium-137 ( 137 Cs) technique was used in order to identify alleged unplanned anthropogenic interference (excavation) in the studied area. It was found that about one third of the ponds bed surface material had been removed and disposed of on the northeast edge, confirming unplanned excavations that took place in the MTP area some years ago. Nonetheless, five years after the excavation, the MTP's ecosystem (flora and fauna) had recovered, which reflect that these small ecosystems are resilient to direct human pressures, like excavations. Moreover with the 137 Cs technique it was possible to identify the historical water level of Omalos MTP, when the fallouts of the Chernobyl accident reached this area, in May of 1986. Therefore, the 137 Cs technique can be useful in the identification of the historical water level of small MTPs and other fragile ephemeral water bodies. Applications include the verification and validation of hydrological models.
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