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Biology subjects

Mohamed, F. N.

Publications and source records attributed to Mohamed, F. N..

2 recordsLinked to original sources

Neuraminidase-on-a-string nanoparticles probe how antigenic distance shapes elicited humoral immunity

Understanding how antigenic distance influences cross-reactive responses can inform vaccine design. Multivalent displays of viral proteins can improve B cell activation due to receptor cross-linking, and mosaic nanoparticles that incorporate variants can lead to cross-reactive B cell responses recognizing conserved epitopes. Here, we used the influenza virus neuraminidase to develop a neuraminidase-on-a-string platform displaying neuraminidase dimer pairs conjugated to a nanocarrier To systematically assess the influence of antigenic distance on humoral immunity, we paired H2N2 neuraminidase with either divergent H3N2 or H11N9 neuraminidases. We found that nanoparticle immunizations with heterologous antigens elicited sera with greater breadth and enhanced enzymatic inhibition relative to immunizations that incorporated a single neuraminidase strain. While sera reactivity for H2N2 neuraminidase was not impacted by inclusion of a second strain, strain-specific responses correlatively increased with the antigenic distance between neuraminidase components. These data show how neuraminidase strain selection for multivalent display immunizations influences elicited breadth and cross-reactivity, highlighting findings that may extend to other viral antigens.

immunology↗

A conserved distal element in the mouse Csf1r locus contributes to transcription in hematopoietic and trophoblast cells.

Expression of the Csf1r gene in mice is restricted to cells of the mononuclear phagocyte system and placental trophoblasts. A conserved element (Csf1r upstream regulatory element A, CUREA) in the mouse Csf1r locus contains transcription start sites utilised by trophoblasts and osteoclasts and an enhancer essential for expression of multicopy transgenic reporters in most tissue macrophages. Here we describe the impact of deletion of CUREA in the mouse genome, on the background of a knock-in Csf1r-FusionRed reporter. By contrast to the essential function in transgene expression, CUREA deletion had no effect on expression of FusionRed or differentiation of blood monocytes or tissue resident macrophages. The deletion reduced Csf1r mRNA in hematopoietic stem cells and committed myeloid progenitors (MPP3) leading to a subtle differentiation delay and also had a significant impact on microglial phenotype in the brain and the differentiation of osteoclasts. The expression of FusionRed in placenta confirmed expression of CSF1R in trophoblasts. 5RACE analysis demonstrated that the effect of CUREA deletion on Csf1r transcription in placenta was overcome by the use of cryptic upstream transcription start sites. We conclude that CUREA is a regulatory element controlling Csf1r transcription. The function overlaps with other enhancers identified in the locus and is therefore partly redundant. Key PointsO_LIA regulatory element (CUREA) in the mouse Csf1r locus has both promoter and enhancer activity. C_LIO_LIGerm-line deletion of CUREA impacts differentiation of marrow progenitors, microglia, osteoclasts and placental trophoblasts. C_LI

cell biology↗