bioRxiv ScienceSearch

Biology subjects

Gibson, J. F.

Publications and source records attributed to Gibson, J. F..

2 recordsLinked to original sources

Neutrophils use selective autophagy receptor p62 to target Staphylococcus aureus for degradation in the zebrafish model

Autophagy leads to degradation of cellular components and has an important role in restricting intracellular pathogens. Autophagy receptors, including p62, target invading intracellular pathogens to the autophagy pathway for degradation. Staphylococcus aureus is a significant pathogen of humans and often life-threatening in the immunocompromised. Increasing evidence demonstrates that S. aureus is an intracellular pathogen of immune cells and may use neutrophils as proliferative niche but the intracellular fate of S. aureus following phagocytosis by neutrophils has not previously been analysed in vivo. In vitro, p62 is able to co-localise with intracellular Staphylococcus aureus, but whether p62 is beneficial or detrimental in host defence against S. aureus in vivo had not been determined. Here we use zebrafish to determine the fate and location of S. aureus within neutrophils throughout infection. We show that Lc3 and p62 recruitment to phagocytosed S. aureus is altered depending on the bacterial location within the neutrophil. We also show rapid Lc3 marking of bacterial phagosomes within neutrophils which may be associated with subsequent bacterial degradation. Finally, we find that p62 is important for controlling cytosolic bacteria demonstrating for the first time a key role of p62 in autophagic control of S. aureus in neutrophils.

immunology

The autophagic response to Staphylococcus aureus provides an intracellular niche in neutrophils

Staphylococcus aureus is a major human pathogen causing multiple pathologies, from cutaneous lesions to life-threatening sepsis. Although neutrophils contribute to immunity against S. aureus, multiple lines of evidence suggest that these phagocytes can provide an intracellular niche for staphylococcal dissemination. However, the mechanism of neutrophil subversion by intracellular S. aureus remains unknown. Targeting of intracellular pathogens by autophagy is recognised as an important component of host innate immunity, but whether autophagy is beneficial or detrimental to S. aureus-infected hosts remains controversial. Here, using larval zebrafish we show that S. aureus is rapidly decorated by the autophagy marker Lc3 following engulfment by macrophages and neutrophils. Upon phagocytosis by neutrophils, Lc3-positive, non-acidified spacious phagosomes are formed. This response is dependent on phagocyte NADPH oxidase as both cyba knockdown and diphenyleneiodonium (DPI) treatment inhibited Lc3 decoration of phagosomes. Importantly, NADPH oxidase inhibition diverted neutrophil S. aureus processing into tight acidified vesicles, which resulted in increased host resistance to the infection. Some intracellular bacteria within neutrophils were also tagged by p62-GFP fusion protein and loss of p62 impaired host defence. Taken together, we have shown that intracellular handling of S. aureus by neutrophils is best explained by Lc3-associated phagocytosis (LAP), which appears to provide an intracellular niche for bacterial pathogenesis, while the selective autophagy receptor p62 is host-protective. The antagonistic roles of LAP and p62-mediated pathways in S. aureus-infected neutrophils may explain the conflicting reports relating to anti-staphylococcal autophagy and provide new insights for therapeutic strategies against antimicrobial resistant staphylococci.

immunology