Molecular mechanism of SCARB2-mediated attachment and uncoating of EV71
PROTEIN & CELL
Authors: Dang, Minghao; Wang, Xiangxi; Wang, Quan; Wang, Yaxin; Lin, Jianping; Sun, Yuna; Li, Xuemei; Zhang, Liguo; Lou, Zhiyong; Wang, Junzhi; Rao, Zihe
Abstract
Unlike the well-established picture for the entry of enveloped viruses, the mechanism of cellular entry of non-enveloped eukaryotic viruses remains largely mysterious. Picornaviruses are representative models for such viruses, and initiate this entry process by their functional receptors. Here we present the structural and functional studies of SCARB2, a functional receptor of the important human enterovirus 71 (EV71). SCARB2 is responsible for attachment as well as uncoating of EV71. Differences in the structures of SCARB2 under neutral and acidic conditions reveal that SCARB2 undergoes a pivotal pH-dependent conformational change which opens a lipid-transfer tunnel to mediate the expulsion of a hydrophobic pocket factor from the virion, a pre-requisite for uncoating. We have also identified the key residues essential for attachment to SCARB2, identifying the canyon region of EV71 as mediating the receptor interaction. Together these results provide a clear understanding of cellular attachment and initiation of uncoating for enteroviruses.
Lysosomal integral membrane protein-2 (LIMP-2/SCARB2) is involved in lysosomal cholesterol export
NATURE COMMUNICATIONS
Authors: Heybrock, Saskia; Kanerva, Kristiina; Meng, Ying; Ing, Chris; Liang, Anna; Xiong, Zi-Jian; Weng, Xialian; Kim, Young Ah; Collins, Richard; Trimble, William; Pomes, Regis; Prive, Gilbert G.; Annaert, Wim; Schwake, Michael; Heeren, Joerg; Luellmann-Rauch, Renate; Grinstein, Sergio; Ikonen, Elina; Saftig, Paul; Neculai, Dante
Abstract
The intracellular transport of cholesterol is subject to tight regulation. The structure of the lysosomal integral membrane protein type 2 (LIMP-2, also known as SCARB2) reveals a large cavity that traverses the molecule and resembles the cavity in SR-B1 that mediates lipid transfer. The detection of cholesterol within the LIMP-2 structure and the formation of cholesterol - like inclusions in LIMP-2 knockout mice suggested the possibility that LIMP2 transports cholesterol in lysosomes. We present results of molecular modeling, crosslinking studies, microscale thermophoresis and cell-based assays that support a role of LIMP-2 in cholesterol transport. We show that the cavity in the luminal domain of LIMP-2 can bind and deliver exogenous cholesterol to the lysosomal membrane and later to lipid droplets. Depletion of LIMP-2 alters SREBP-2-mediated cholesterol regulation, as well as LDL-receptor levels. Our data indicate that LIMP-2 operates in parallel with Niemann Pick (NPC)-proteins, mediating a slower mode of lysosomal cholesterol export.