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Greene, J. T.

Publications and source records attributed to Greene, J. T..

2 recordsLinked to original sources

Total, not isoform-specific, Lyn expression by macrophages promotes TLR activation and restricts proliferation

Toll-like receptor (TLR) signaling is vital to antimicrobial macrophage function, and its dysregulation is associated with many disease states, including lupus, multiple sclerosis, pulmonary fibrosis, and cancer. The Src-family kinase Lyn plays activating and inhibitory roles downstream of TLRs, yet distinct functions of the Lyn splice variants LynA and LynB in TLR signaling had not been investigated. We used isoform-specific Lyn knockout mice (LynAKO and LynBKO) to interrogate the contribution of each isoform to TLR signaling in bone marrow-derived macrophages. Bulk RNA sequencing and cytokine analyses revealed that complete Lyn deficiency (LynKO) dampens TLR4- and TLR7-induced inflammatory gene expression and TNF production, but enhances the expression of genes responsible for synthesizing the extracellular matrix and promoting proliferation. Despite a reduction in total Lyn levels, the expression of either LynA or LynB alone was sufficient to preserve wild-type transcriptional responses and TNF production in response to the TLR7 agonist R848. However, LyAKO and LynBKO macrophages did have partially impaired TNF production in response to the TLR4 agonist lipopolysaccharide. Additionally, LynAKO and LynBKO macrophages were hyperproliferative, like LynKO cells. These data suggest that Lyn promotes macrophage activation downstream of TLRs and restrains aberrant proliferation and matrix deposition in a dose-dependent rather than isoform-specific manner. Summary SentenceRNA sequencing and functional assays demonstrate that both LynA and LynB restrict macrophage proliferation and drive TLR-induced ECM-remodeling and inflammatory cytokine production.

immunology↗

Primary infection with Zika virus provides one-way heterologous protection against Spondweni virus infection in rhesus macaques

Spondweni virus (SPONV) is the closest known relative of Zika virus (ZIKV). SPONV pathogenesis resembles that of ZIKV in pregnant mice, and both viruses are transmitted by Aedes aegypti mosquitoes. We aimed to develop a translational model to further understand SPONV transmission and pathogenesis. We found that cynomolgus macaques (Macaca fascicularis) inoculated with ZIKV or SPONV were susceptible to ZIKV, but resistant to SPONV infection. In contrast, rhesus macaques (Macaca mulatta) supported productive infection with both ZIKV and SPONV and developed robust neutralizing antibody responses. Crossover serial challenge in rhesus macaques revealed that SPONV immunity did not protect against ZIKV infection, whereas ZIKV immunity was fully protective against SPONV infection. These findings establish a viable model for future investigation into SPONV pathogenesis, and suggest the risk of SPONV emergence is low in areas with high ZIKV seroprevalence due to one-way cross-protection between ZIKV and SPONV. TeaserIdentification of asymmetric immune interactions between Zika and Spondweni viruses in macaque monkeys.

microbiology↗