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Biology subjects

Cornelis, G.

Publications and source records attributed to Cornelis, G..

2 recordsLinked to original sources

Orthogonal CRISPR screens and human liver chimeric mice identify hepatitis B virus host factors

Hepatitis B virus (HBV) chronically infects approximately 250 million people worldwide, and reliable curative therapies are lacking. A broader understanding of viral-host interactions could accelerate efforts to find new host-centric therapeutic targets. However, inefficient cell culture systems and limited replication markers compatible with pooled screening have precluded the widespread use of genetic perturbation screens. Here, we performed the first pooled, genome-wide CRISPR-Cas9 knockout (KO) screen with authentic HBV infection and integrated these results with two orthogonal pooled screens to identify host factors. We selected 72 genes for a multi-step assessment that included arrayed validation assays using both HBV infection and pgRNA transfection. We then independently tested thirteen genes using high-efficiency bulk KO experiments to guide further investigations of both antiviral and proviral factors. In both KO and siRNA-mediated knockdown experiments, depletion of the top antiviral factor, EXOC1, enhanced multiple HBV replication markers, and transcriptomic analysis revealed activation of hypoxia- and HIF-1 gene signatures. Three proviral factors, IRF2, WDR48, and ZCCHC14, were investigated in vivo using a human liver chimeric mouse model, which demonstrated that ZCCHC14 KO greatly reduced HBV replication and spread. Together, these complementary in vitro and in vivo platforms expand the catalog of HBV host factors and provide a scalable framework for host target discovery.

microbiology↗

Endogenous retrovirus IAP forms virus-like particles and traffics across the maternal-fetal barrier

For 50 years, virus-like particles (VLPs) have been observed in the placentas of many species, but their source and function remain unexplored. Here, we identify intracisternal a-type particle (IAP) elements, specifically the IAPEz-int family, as the likely source of VLPs in the mouse placenta. IAPEz-int instances are expressed throughout placentation and contain intact gag and env sequences critical for the formation of immature and mature particles, respectively. To elucidate a role for IAPEz-int derived VLPs in the mouse placenta, we generated a knock-in mouse containing a full-length element tagged with HA/FLAG. Using this line, we demonstrate that fetal IAPEz-int traffics into and across the maternal decidua. In total, we suggest that placental VLPs derive from IAPEz-int, and demonstrate their potential to traffic into maternal tissues, suggesting a role for these structures in maternal-fetal communication at the placental interface.

developmental biology↗