PLA2G16 represents a switch between entry and clearance of Picornaviridae
NATURE
Authors: Staring, Jacqueline; von Castelmur, Eleonore; Blomen, Vincent A.; van den Hengel, Lisa G.; Brockmann, Markus; Baggen, Jim; Thibaut, Hendrik Jan; Nieuwenhuis, Joppe; Janssen, Hans; van Kuppeveld, Frank J. M.; Perrakis, Anastassis; Carette, Jan E.; Brummelkamp, Thijn R.
Abstract
Picornaviruses are a leading cause of human and veterinary infections that result in various diseases, including polio and the common cold. As archetypical non-enveloped viruses, their biology has been extensively studied(1). Although a range of different cell-surface receptors are bound by different picornaviruses(2-7), it is unclear whether common host factors are needed for them to reach the cytoplasm. Using genome-wide haploid genetic screens, here we identify the lipid-modifying enzyme PLA2G16 (refs 8-11) as a picornavirus host factor that is required for a previously unknown event in the viral life cycle. We find that PLA2G16 functions early during infection, enabling virion-mediated genome delivery into the cytoplasm, but not in any virion-assigned step, such as cell binding, endosomal trafficking or pore formation. To resolve this paradox, we screened for suppressors of the Delta PLA2G16 phenotype and identified a mechanism previously implicated in the clearance of intracellular bacteria(12). The sensor of this mechanism, galectin-8 (encoded by LGALS8), detects permeated endosomes and marks them for autophagic degradation, whereas PLA2G16 facilitates viral genome translocation and prevents clearance. This study uncovers two competing processes triggered by virus entry: activation of a pore-activated clearance pathway and recruitment of a phospholipase to enable genome release.
Pathological lymphangiogenesis is modulated by galectin-8-dependent crosstalk between podoplanin and integrin-associated VEGFR-3
NATURE COMMUNICATIONS
Authors: Chen, Wei-Sheng; Cao, Zhiyi; Sugaya, Satoshi; Lopez, Maria J.; Sendra, Victor G.; Laver, Nora; Leffler, Hakon; Nilsson, Ulf J.; Fu, Jianxin; Song, Jianhua; Xia, Lijun; Hamrah, Pedram; Panjwani, Noorjahan
Abstract
Lymphangiogenesis plays a pivotal role in diverse pathological conditions. Here, we demonstrate that a carbohydrate-binding protein, galectin-8, promotes pathological lymphangiogenesis. Galectin-8 is markedly upregulated in inflamed human and mouse corneas, and galectin-8 inhibitors reduce inflammatory lymphangiogenesis. In the mouse model of corneal allogeneic transplantation, galectin-8-induced lymphangiogenesis is associated with an increased rate of corneal graft rejection. Further, in the murine model of herpes simplex virus keratitis, corneal pathology and lymphangiogenesis are ameliorated in Lgals8(-/-) mice. Mechanistically, VEGF-C-induced lymphangiogenesis is significantly reduced in the Lgals8(-/-) and Pdpn(-/-) mice; likewise, galectin-8-induced lymphangiogenesis is reduced in Pdpn(-/-) mice. Interestingly, knockdown of VEGFR-3 does not affect galectin-8-mediated lymphatic endothelial cell (LEC) sprouting. Instead, inhibiting integrins alpha 1 beta 1 and alpha 5 beta 1 curtails both galectin-8-and VEGF-C-mediated LEC sprouting. Together, this study uncovers a unique molecular mechanism of lymphangiogenesis in which galectin-8-dependent crosstalk among VEGF-C, podoplanin and integrin pathways plays a key role.