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Ueno, L.

Publications and source records attributed to Ueno, L..

2 recordsLinked to original sources

The conserved bridging domain on HCV E1E2 glycoprotein complex is targeted by neutralizing antibodies from diverse lineages

The induction of potent and cross-reactive neutralizing antibody (nAb) responses remains a challenge in vaccine development against antigenically diverse viruses such as hepatitis C virus (HCV). The HCV E1E2 glycoprotein complex contains two major neutralizing sites: the neutralizing face (NF) and the less explored bridging domain (BD). Here, we characterized 25 BD-targeting nAbs isolated from infection or immunization. These antibodies arise from diverse B cell lineages but share convergent CDRH3 features. Epitope mapping by alanine scanning and negative-stain electron microscopy revealed overlapping epitopes on BD spanning antigenic regions AR4 and AR5, with variable back layer engagement. The crystal structure of a non-human primate BD nAb RM3-26 in complex with E2 uncovered a back layer-directed recognition mode analogous to that of the human nAb hcab40. Together, BD- and NF-directed nAbs exhibited additivity in their neutralization, highlighting BD as a conserved site of vulnerability on HCV and a valuable target for rational vaccine design.

immunology↗

The constitutive oncogenic and signaling activities of phospha-tidylinositol 3-kinase (PI3K) isoforms p110β and p110δ

AbstractThe p110{beta} and p110{delta} isoforms of the catalytic subunit of phosphatidylinositol 3-kinase (PI3K) show enhanced oncogenic and signaling activities as compared with the p110 protein. The adapter binding domains (ABDs) of p110{beta} and p110{delta} contain an isoform-specific PXXP mo- tif. Mutations of this PXXP to AXXA diminish the oncogenic and signaling activities. This loss of function can be compensated by placing a gain-of-function mutation in the helical domain of the P/A mutants. The P/A mutants still associate with the regulatory p85 subunit, but the affinity of this interaction is decreased. p110 with the ABD of either p110{beta} or p110{delta} shows an increase of oncogenic and signaling activities, whereas p110{beta} or p110{delta} with the ABD of p110 have greatly reduced oncogenic and signaling activities. Introducing the PXXP motif in the ABD of p110 re- sults in a significant gain of function. We conclude that the PXXP motif in the ABD of p110{beta} and p110{delta} is essential for the elevated oncogenic and signaling activities of these isoforms. We pro- pose that the PXXP motif in the ABD of p110{beta} and p110{delta} affects the interaction with the iSH2 domain of p85, shifting the regulatory SH2 domains into less effective inhibitory conformations.

cancer biology↗