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Common damage-associated molecular patterns (DAMPs) were internalized through the class A scavenger receptors MSR1 (Montrer MSR1 Kits ELISA) and MARCO in vitro. In ischemic murine brain, DAMP (Montrer AMPH Kits ELISA) internalization was largely mediated by MSR1 (Montrer MSR1 Kits ELISA). Combined deficiency for Msr1 (Montrer MSR1 Kits ELISA) and Marco in infiltrating myeloid cells caused impaired clearance of DAMPs, more severe inflammation, and exacerbated neuronal injury in a murine model of ischemic stroke.
Increasing MARCO expression by targeting Nrf2 (Montrer NFE2L2 Kits ELISA) signaling or the Akt (Montrer AKT1 Kits ELISA)-TFEB-MARCO pathway are promising strategies to improve bacterial clearance and survival in postinfluenza bacterial pneumonia.
free actin likely contributes to impaired host defense by blocking scavenger receptor binding of bacteria.
this study shows that Marco functions as co-receptor along with TLRs for HMGB1 (Montrer HMGB1 Kits ELISA) in M1-type inflammatory macrophages
MARCO Is Processed by either Macropinocytosis or Endocytosis-Autophagy Pathway
our data demonstrate that MARCO differentially affects TLR-induced DC activation and suggest targeting of MARCO could lead to different outcomes that depend on the inflammatory context encountered by dendritic cells.
Vaccinia virus bound directly to MARCO, and overexpression of MARCO increased susceptibility to vaccinia infection.
MARCO-/- dendritic cells demonstrated enhanced migratory capacity in response to CCL-21 (Montrer CCL21 Kits ELISA) in vitro.
herpes simplex virus type 1 binds to MARCO to enhance its capacity for disease.
results indicate that accumulation of SQSTM1 (Montrer SQSTM1 Kits ELISA) leads to increased activation of NFE2L2 (Montrer NFE2L2 Kits ELISA) and the subsequent increase in MARCO and MSR1 (Montrer MSR1 Kits ELISA)
These data suggest the SRCR domain of MARCO is the key domain in modulating ligand binding, enhancing downstream pro-inflammatory signaling and MARCO-mediated cellular adhesion.
Expression of MARCO declined progressively as hepatocellular carcinoma condition is aggravated.
MARCO single nucleotide polymorphisms rs12998782 increases risk to pulmonary tuberculosis in a Chinese Han population.
CD36 and MARCO are associated with the susceptibility of Chinese Han females to carotid atherosclerosis. Menopausal status may affect the association between gene polymorphisms and carotid atherosclerosis in the female Chinese Han population.
Increasing MARCO expression by targeting Nrf2 (Montrer GABPA Kits ELISA) signaling or the Akt (Montrer AKT1 Kits ELISA)-TFEB-MARCO pathway are promising strategies to improve bacterial clearance and survival in postinfluenza bacterial pneumonia.
results suggest that MARCO polymorphisms may regulate phagocytosis of M. tuberculosis and susceptibility and severity of pulmonary tuberculosis
this paper shows that key gene of intermediate proinflammatory monocytes, such as MARCO, is expressed three- to fourfold more in juvenile idiopathic arthritis-enthesitis-related arthritis
this study shows that MARCO modulates inflammatory responses against Cryptococcus neoformans infection
this translational investigation identified gene candidates, including Marco, for host susceptibility to multiple phenotypes of RSV disease in mice that closely mimic human disease, and a polymorphism in human MARCO associated with increased risk of RSV disease severity in infants.
Identifying N-linked glycan moiety and motifs in the cysteine-rich domain critical for N-glycosylation and intracellular trafficking of SR-AI (Montrer MSR1 Kits ELISA) and MARCO.
The protein encoded by this gene is a member of the class A scavenger receptor family and is part of the innate antimicrobial immune system. The protein may bind both Gram-negative and Gram-positive bacteria via an extracellular, C-terminal, scavenger receptor cysteine-rich (SRCR) domain. In addition to short cytoplasmic and transmembrane domains, there is an extracellular spacer domain and a long, extracellular collagenous domain. The protein may form a trimeric molecule by the association of the collagenous domains of three identical polypeptide chains.
macrophage receptor MARCO
, scavenger receptor class A member 2
, scavenger receptor class A, member 2
, putative scavenger receptor MARCO