Leishmania major-induced alteration of host cellular and systemic copper homeostasis drives the fate of infection

Rupam Paul, Arunaloke Chakrabarty, Soma Samanta, Sohini Dey, RM Pandey,Saptarshi Maji, Aidan T. Pezacki,Christopher J. Chang,Rupak Datta,Arnab Gupta

bioRxiv (Cold Spring Harbor Laboratory)(2023)

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摘要
Abstract Copper plays a key role in host-pathogen interaction. We found that during Leishmania major infection, the parasite-harboring macrophage regulates its copper homeostasis pathway in a way to facilitate copper-mediated neutralization of the pathogen. Copper-ATPase ATP7A transports copper to amastigote-harboring phagolysosomes to induce stress on parasites. Leishmania in order to evade the copper stress, utilizes a variety of manipulative measures to lower the host-induced copper stress. It induces deglycosylation and degradation of host-ATP7A and downregulation of copper importer, CTR1 by cysteine oxidation. Additionally, Leishmania induces CTR1 endocytosis that arrests copper uptake. In mouse model of infection, we report an increase in systemic bioavailable copper in infected animals. Heart acts as the major organ for diverting its copper reserves to systemic circulation to fight-off infection by downregulating its CTR1. Our study explores reciprocal mechanism of manipulation of host copper homeostasis pathway by macrophage and Leishmania to gain respective advantages in host-pathogen interaction.
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systemic copper homeostasis,<i>leishmania
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