» Articles » PMID: 28423002

Human SR-BII Mediates SAA Uptake and Contributes to SAA Pro-inflammatory Signaling in Vitro and in Vivo

Abstract

Serum amyloid A (SAA) is an acute phase protein with cytokine-like and chemotactic properties, that is markedly up-regulated during various inflammatory conditions. Several receptors, including FPRL-1, TLR2, TLR4, RAGE, class B scavenger receptors, SR-BI and CD36, have been identified as SAA receptors. This study provides new evidence that SR-BII, splice variant of SR-BI, could function as an SAA receptor mediating its uptake and pro-inflammatory signaling. The uptake of Alexa Fluor488 SAA was markedly (~3 fold) increased in hSR-BII-expressing HeLa cells when compared with mock-transfected cells. The levels of SAA-induced interleukin-8 secretion by hSR-BII-expressing HEK293 cells were also significantly (~3-3.5 fold) higher than those detected in control cells. Moderately enhanced levels of phosphorylation of all three mitogen-activated protein kinases, ERK1/2, and p38 and JNK, were observed in hSR-BII-expressing cells following SAA stimulation when compared with control wild type cells. Transgenic mice with pLiv-11-directed liver/kidney overexpression of hSR-BI or hSR-BII were used to assess the in vivo role of each receptor in SAA-induced pro-inflammatory response in these organs. Six hours after intraperitoneal SAA injection both groups of transgenic mice demonstrated markedly higher (~2-5-fold) expression levels of inflammatory mediators in the liver and kidney compared to wild type mice. Histological examinations of hepatic and renal tissue from SAA-treated mice revealed moderate level of damage in the liver of both transgenic but not in the wild type mice. Activities of plasma transaminases, biomarkers of liver injury, were also moderately higher in hSR-B transgenic mice when compared to wild type mice. Our findings identify hSR-BII as a functional SAA receptor that mediates SAA uptake and contributes to its pro-inflammatory signaling via the MAPKs-mediated signaling pathways.

Citing Articles

Functional Interactions Between Recombinant Serum Amyloid A1 (SAA1) and Chemokines in Leukocyte Recruitment.

Van Damme J, Struyf S, Proost P, Opdenakker G, Gouwy M Int J Mol Sci. 2025; 26(5).

PMID: 40076881 PMC: 11900440. DOI: 10.3390/ijms26052258.


Synthetic Amphipathic Helical Peptide L-37pA Ameliorates the Development of Acute Respiratory Distress Syndrome (ARDS) and ARDS-Induced Pulmonary Fibrosis in Mice.

Chernov A, Telegin G, Minakov A, Kazakov V, Rodionov M, Palikov V Int J Mol Sci. 2024; 25(15).

PMID: 39125954 PMC: 11312864. DOI: 10.3390/ijms25158384.


Role of Serum Amyloid A as a Biomarker for Predicting the Severity and Prognosis of COVID-19.

Abbas A, Alghamdi A, Mezghani S, Ben Ayed M, Alamori A, Alghamdi G J Immunol Res. 2022; 2022:6336556.

PMID: 36465717 PMC: 9715339. DOI: 10.1155/2022/6336556.


Class B Scavenger Receptors BI and BII Protect against LPS-Induced Acute Lung Injury in Mice by Mediating LPS.

Baranova I, Bocharov A, Vishnyakova T, Chen Z, Birukova A, Ke Y Infect Immun. 2021; 89(10):e0030121.

PMID: 34097506 PMC: 8445172. DOI: 10.1128/IAI.00301-21.


The dynamics of inflammatory markers in coronavirus disease-2019 (COVID-19) patients: A systematic review and meta-analysis.

Mahat R, Panda S, Rathore V, Swain S, Yadav L, Sah S Clin Epidemiol Glob Health. 2021; 11:100727.

PMID: 33778183 PMC: 7979575. DOI: 10.1016/j.cegh.2021.100727.


References
1.
Mulcahy J, Riddell D, Owen J . Human scavenger receptor class B type II (SR-BII) and cellular cholesterol efflux. Biochem J. 2003; 377(Pt 3):741-7. PMC: 1223905. DOI: 10.1042/BJ20030307. View

2.
Leinonen E, Hurt-Camejo E, Wiklund O, Hulten L, Hiukka A, Taskinen M . Insulin resistance and adiposity correlate with acute-phase reaction and soluble cell adhesion molecules in type 2 diabetes. Atherosclerosis. 2003; 166(2):387-94. DOI: 10.1016/s0021-9150(02)00371-4. View

3.
Sandri S, Rodriguez D, Gomes E, Pequeno Monteiro H, Russo M, Campa A . Is serum amyloid A an endogenous TLR4 agonist?. J Leukoc Biol. 2008; 83(5):1174-80. DOI: 10.1189/jlb.0407203. View

4.
Lavie G, Zucker-Franklin D, FRANKLIN E . Degradation of serum amyloid A protein by surface-associated enzymes of human blood monocytes. J Exp Med. 1978; 148(4):1020-31. PMC: 2185017. DOI: 10.1084/jem.148.4.1020. View

5.
Vishnyakova T, Bocharov A, Baranova I, Chen Z, Remaley A, Csako G . Binding and internalization of lipopolysaccharide by Cla-1, a human orthologue of rodent scavenger receptor B1. J Biol Chem. 2003; 278(25):22771-80. DOI: 10.1074/jbc.M211032200. View