Back

HIF-alpha signaling mediates the macrophage inflammatory response during Leishmania major infection

Fry, L. G.; Washam, C. L.; Roys, H.; Bowlin, A. K.; Venugopal, G.; Bird, J. T.; Byrum, S. D.; Weinkopff, T.

2024-08-27 microbiology
10.1101/2024.08.27.605844 bioRxiv
Show abstract

Cutaneous leishmaniasis (CL) contributes significantly to the global burden of neglected tropical diseases, with 12 million people currently infected with Leishmania parasites. CL encompasses a range of disease manifestations, from self-healing skin lesions to permanent disfigurations. Currently there is no vaccine available, and many patients are refractory to treatment, emphasizing the need for new therapeutic targets. Previous work demonstrated macrophage HIF--mediated lymphangiogenesis is necessary to achieve efficient wound resolution during murine L. major infection. Here, we investigate the role of macrophage HIF- signaling independent of lymphangiogenesis. We sought to determine the relative contributions of the parasite and the host-mediated inflammation in the lesional microenvironment to myeloid HIF- signaling. Because HIF- activation can be detected in infected and bystander macrophages in leishmanial lesions, we hypothesize it is the hosts inflammatory response and microenvironment, rather than the parasite, that triggers HIF- activation. To address this, macrophages from mice with intact HIF- signaling (LysMCreARNTf/+) or mice with deleted HIF- signaling (LysMCreARNTf/f) were subjected to RNASequencing after L. major infection and under pro-inflammatory stimulus. We report that L. major infection alone is enough to induce some minor HIF--dependent transcriptomic changes, while infection with L. major in combincation with pro-inflammatory stimuli induces numerous transcriptomic changes that are both dependent and independent of HIF- signaling. Additionally, by coupling transcriptomic analysis with several pathway analyses, we found HIF- suppresses pathways involved in protein translation during L. major infection in a pro-inflammatory environment. Together these findings show L. major induces a HIF--dependent transcriptomic program, but HIF- only suppresses protein translation in a pro-inflammatory environment. Thus, this work indicates the host inflammatory response, rather than the parasite, largely contributes to myeloid HIF- signaling during Leishmania infection.

Matching journals

The top 3 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.