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Adedoyin, G.

Publications and source records attributed to Adedoyin, G..

2 recordsLinked to original sources

ERα mediated gene state switching regulates the extent of the single-cell estrogen response

Gene regulation is complex, involving the coordination of hundreds of proteins that function to control genome accessibility, mediate enhancer-promoter interactions, and initiate transcription. At individual loci, transcriptional initiation is stochastic, resulting in short periods of nascent RNA synthesis known as transcriptional bursts. To understand how altered Estrogen Receptor function and cofactor recruitment regulates transcriptional bursting, we used single molecule imaging of estrogen responsive genes in Bisphenol A (BPA) treated cells. Using live cell imaging of the estrogen responsive TFF1 gene, we observe that cells treated with BPA exhibited burst initiation kinetics and burst sizes which were indistinguishable from cells induced with Estradiol (E2). However, we observed a 50% reduction in the number of active alleles in BPA treated cells. This effect is gene specific, as GREB1 was unperturbed. Although we observed no difference in chromatin accessibility, the TFF1 promoter exhibited an altered structure which coincided with reduced ER and cofactor binding. Lastly, deletion of the enhancer locus removed the BPA effect, indicating that enhancer function was perturbed. Our results demonstrate gene specific effects of altered ER recruitment and function which lead to a reduction of transcriptionally permissive states. Our work supports the model that the early estrogen response occurs from alleles in primed transcriptionally permissive states with additional inactive alleles contributing to the response over time.

cell biology↗

Toxoplasma surface coat protein TgSRS57 (TgSAG3) regulates complement deposition, Factor H recruitment, and promotes parasite persistence

The surface coat of Toxoplasma gondii possesses a lectin-like activity that activates host complement. Serum resistance relies on specific recruitment of host regulators Factor H (FH) and C4BP to the parasite surface to inactivate bound C3 and evade the complement system. TgSRS57 (TgSAG3) was previously reported to possess a lectin-like activity specific for sulfated proteoglycans (SPGs) that facilitated host cell attachment and parasite invasion. To investigate whether TgSRS57 actively recruits Factor H to the parasite surface to regulate the complement cascade, we generated Type I RH and Type II CZ1 knockout strains. {Delta}srs57 parasites showed a reduction in both C3 deposition and FH recruitment indicating that TgSRS57 is a C3 acceptor and regulates complement activation. However, {Delta}srs57 parasites showed no attachment defect, possessed normal extracellular survival and intracellular replication kinetics, and were more virulent than WT strains in low dose murine infections, contrary to previous findings. To better understand the genetic and cellular data, we determined the 1.59[A] resolution TgSRS57 crystal structure. Notably, TgSRS57 did not possess a dimer dependent basic surface groove as originally modeled, nor did it bind heparin. However, approximately 10 distinct parasite proteins were identified that interact specifically with SPGs. Infection studies showed that Type II {Delta}srs57 parasites achieved higher parasite burdens and elevated inflammatory responses compared to WT parasites. Infection of C3 deficient mice established that TgSRS57-dependent protection was C3-dependent and that T. gondii actively parasitizes the complement system. Our results suggest that the interaction between TgSRS57 and C3 plays a critical role in disease tolerance by controlling both parasite proliferation and persistence in vivo. AUTHOR SUMMARYThe Toxoplasma gondii surface coat is dominated by a superfamily of developmentally expressed, antigenically distinct adhesins collectively called the SRS proteins, which are structurally analogous to the Plasmodium 6-CYS surface proteins. These proteins are thought to possess lectin-like activities, facilitate parasite attachment and entry into host cells, and regulate innate effectors of the host immune response. Disease tolerance in hosts is critically dependent on the induction of sufficient immunity to limit parasite replication and promote host survival without inducing bystander immune damage. In this study we employed a combination of genetic, cellular and structural biology approaches to establish that the surface antigen TgSRS57 regulates complement C3 deposition on parasite surfaces by specifically recruiting host Factor H to actively resist serum killing and limit the formation of the C5b-9 membrane attack complex. Further, that the presence of C3 was host protective, as C3-deficient mice failed to control parasite replication. The ability of the parasites to inactivate C3 was also necessary to resist serum killing and promote chronic infection. Because complement exists as a potent inflammatory mediator, the active regulation of complement by Toxoplasma ensures that the parasite is not lysed by C3 but also limits the induction of lethal immunopathology, thereby promoting an immune balance, disease tolerance, and the long-term persistence of transmissible parasites.

microbiology↗