Extracellular ATP released from Candida albicans activates non-peptidergic neurons to augment host defense
Edwards, T.; Zhang, S.; Liu, A.; Cohen, J.; Zhou, P.; Mogavero, S.; hube, b.; berman, j.; bougnoux, m.-e.; mathers, a.; gaffen, s.; Albers, K. M.; koeber, h. r.; davis, b.; d'enfert, c.; Kaplan, D. H.
Show abstract
Intestinal microbes release ATP to modulate local immune responses. Herein we demonstrates that Candida albicans, an opportunistic commensal fungus, also modulates immune responses via secretion of ATP. We found that ATP secretion from C. albicans varied between standard laboratory strains. A survey of eighty-nine clinical isolates revealed heterogeneity in ATP secretion, independent of growth kinetics and intracellular ATP levels. Isolates from blood released less ATP than commensals, suggesting that ATP secretion assists with commensalism. To confirm this, cohorts of mice were infected with strains matched for origin, and intracellular ATP concentration, but high or low extracellular ATP. In all cases fungal burden was inversely correlated with ATP secretion. Mice lacking P2RX7, the key ATP receptor expressed by immune cells in the skin, showed no alteration in fungal burden. Rather, treatments with a P2RX2/3 antagonist result in increased fungal burden. P2RX2/3 is expressed by non-peptidergic neurons that terminate in the epidermis. Cultured sensory neurons flux Ca2+ when exposed to supernatant from heat-killed C. albicans (HKCA), and these non-peptidergic fibers are the dominant subset that respond to HKCA. Ca2+ flux, but not CGRP-release, can be abrogated by pretreatment of HKCA supernatant with apyrase. To determine whether non-peptidergic neurons participate in host defense, we generated MRGPRD-DTR mice. Infection in these mice resulted in increased CFU only for those C. albicans strains with high ATP secretion. Taken together, our findings indicate that C. albicans releases ATP, which is recognized by non-peptidergic nerves in the skin resulting in augmented anti-Candida immune responses. Author SummaryBacterial release of ATP has been shown to modulate immune responses. Candida albicans displays heterogeneity in ATP release among laboratory strains and commensal clinical isolates release more ATP than invasive isolates. C. albicans strains with high ATP secretion show lower fungal burden following epicutaneous infection. Mice lacking P2RX7, the key ATP receptor expressed by immune cells, showed no alteration in fungal burden. In contrast, treatment with P2RX2/3 antagonists resulted in increased fungal burden. P2RX3 is expressed by a subset of non-peptidergic neurons that terminate in the epidermis. These non-peptidergic fibers are the predominant responders when cultured sensory neurons are exposed to heat-killed C. albicans in vitro. Mice lacking non-peptidergic neurons have increased infection when exposed to high but not low ATP-secreting isolates of C. albicans. Taken together, our findings indicate that C. albicans releases ATP which is recognized by non-peptidergic nerves in the skin resulting in augmented anti-Candida immune responses. Bullet pointsO_LIATP released from heat killed C. albicans activates non-peptidergic sensory neurons C_LIO_LILive C. albicans clinical isolates release variable amounts of ATP C_LIO_LIElevated levels of ATP released by C. albicans correlates with reduced infectivity in vivo C_LIO_LIMRGPRD-expressing cutaneous neurons are required for defense against ATP-secreting C. albicans C_LI
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Single-Cell Transcriptomics Unveils Skin Cell Specific Antifungal Immune Responses and IL-1Ra- IL-1R Immune Evasion Strategies of Emerging Fungal Pathogen Candida auris 95%
- Microbiota instruct IL-17A-producing innate lymphoid cells to promote skin inflammation in cutaneous leishmaniasis 94%
- Mitochondrial ROS production by neutrophils is required for host antimicrobial function against Streptococcus pneumoniae and is controlled by A2B adenosine receptor signaling 94%
Similar papers in this journal
- Antimicrobials from a feline commensal bacterium inhibit skin infection by drug-resistant S. pseudintermedius. 93%
- Mycolactone causes destructive Sec61-dependent loss of the endothelial glycocalyx and vessel basement membrane: a new indirect mechanism driving tissue necrosis in Mycobacterium ulcerans infection 93%
- IL-4 and helminth infection downregulate MINCLE-dependent macrophage response to mycobacteria and Th17 adjuvanticity 93%
Similar papers in this journal
- GRP78 and Integrins Play Different Roles in Host Cell Invasion During Mucormycosis 93%
- The globular C1q receptor is required for epidermal growth factor receptor signaling during Candida albicans infection 93%
- A refined low-dose murine model of Mycobacterium ulcerans infection to assess integrated immune networks in Buruli ulcer pathogenesis 93%
Similar papers in this journal
- Commensal Neisseria species share immune suppressive mechanisms with Neisseria gonorrhoeae 92%
- Arp2/3 complex contributes to the actin-dependent uptake of Aspergillus terreus conidia by alveolar epithelial cells 92%
- KCa3.1-transgene induction in murine skin produces pruritic eczematous dermatitis with severe epidermal hyperplasia and hyperkeratosis 92%
Similar papers in this journal
- The IRE1α stress signaling axis is a key regulator of neutrophil antimicrobial effector function 93%
- MAVS expression in alveolar macrophages is essential for host resistance against Aspergillus fumigatus 92%
- Deficiency in Bhlhe40 impairs resistance to H. polygyrus bakeri and reveals novel Csf2rb-dependent regulation of anti-helminth immunity 92%
"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.