Abstract
Serum amyloid A3 (SAA3) possesses characteristics distinct from the other serum amyloid A isoforms, SAA1, SAA2, and SAA4. High density lipoprotein contains the latter three isoforms, but not SAA3. The expression of mouse SAA3 (mSAA3) is known to be up-regulated extrahepatically in inflammatory responses, and acts as an endogenous ligand for the toll-like receptor 4/MD-2 complex. We previously reported that mSAA3 plays an important role in facilitating tumor metastasis by attracting circulating tumor cells and enhancing hyperpermeability in the lungs. On the other hand, human SAA3 (hSAA3) has long been regarded as a pseudogene, which is in contrast to the abundant expression levels of the other isoforms. Although the nucleotide sequence of hSAA3 is very similar to that of the other SAAs, a single oligonucleotide insertion in exon 2 causes a frame-shift to generate a unique amino acid sequence. In the present study, we identified that hSAA3 was transcribed in the hSAA2-SAA3 fusion transcripts of several human cell lines. In the fusion transcript, hSAA2 exon 3 was connected to hSAA3 exon 1 or hSAA3 exon 2, located approximately 130kb downstream from hSAA2 exon 3 in the genome, which suggested that it is produced by alternative splicing. Furthermore, we succeeded in detecting and isolating hSAA3 protein for the first time by an immunoprecipitation-enzyme linked immune assay system using monoclonal and polyclonal antibodies that recognize the hSAA3 unique amino acid sequence. We also demonstrated that hSAA3 bound oxidized low density lipoprotein receptor (oxLDL receptor, LOX-1) and elevated the phosphorylation of ERK, the intracellular MAP-kinase signaling protein.
Highlights
Serum amyloid A (SAA) is a very important protein that is markedly up-regulated in acute phase inflammatory responses
We determined that 52 bp of the 5’ side of human SAA3 (hSAA3) exon 1 was missing in the readthrough
HSAA3 exon 2 identified in this study held an intron between hSAA3 exon 2 and hSAA3 exon 3 that were assigned in the previous study
Summary
Serum amyloid A (SAA) is a very important protein that is markedly up-regulated in acute phase inflammatory responses. Mouse SAA1 and SAA2 are well-known to be expressed in hepatocytes, whereas mSAA3 is expressed extrahepatically in cells including adipocytes, epithelial cells, and endothelial cells [5,6,7]. While these three isoforms are inducible isoforms, mSAA4 is constitutively expressed in hepatocytes. We determined 5’ region of hSAA3 transcripts for the first time to find out that hSAA3 is expressed as a part of the hSAA2-SAA3 readthrough, encoding either the hSAA2SAA3 fusion protein or truncated hSAA2 in the first cistron and a short peptide in the second cistron
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