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- Title
Concholepas hemocyanin biosynthesis takes place in the hepatopancreas, with hemocytes being involved in its metabolism.
- Authors
Manubens, Augusto; Salazar, Fabián; Haussmann, Denise; Figueroa, Jaime; Campo, Miguel; Pinto, Jonathan; Huaquín, Laura; Venegas, Alejandro; Becker, María
- Abstract
Hemocyanins are copper-containing glycoproteins in some molluscs and arthropods, and their best-known function is O transport. We studied the site of their biosynthesis in the gastropod Concholepas concholepas by using immunological and molecular genetic approaches. We performed immunohistochemical staining of various organs, including the mantle, branchia, and hepatopancreas, and detected C. concholepas hemocyanin (CCH) molecules in circulating and tissue-associated hemocytes by electron microscopy. To characterize the hemocytes, we purified them from hemolymph. We identified three types of granular cells. The most abundant type was a phagocyte-like cell with small cytoplasmic granules. The second type contained large electron-dense granules. The third type had vacuoles containing hemocyanin molecules suggesting that synthesis or catabolism occurred inside these cells. Our failure to detect cch-mRNA in hemocytes by reverse transcription with the polymerase chain reaction (RT-PCR) led us to propose that hemocytes instead played a role in CCH metabolism. This hypothesis was supported by colloidal gold staining showing hemocyanin molecules in electron-dense granules inside hemocytes. RT-PCR analysis, complemented by in situ hybridization analyses with single-stranded antisense RNAs as specific probes, demonstrated the presence of cch-mRNA in the hepatopancreas; this was consistent with the specific hybridization signal and confirmed the hepatopancreas as the site of CCH synthesis. Finally, we investigated the possibility that CCH catabolism in hemocytes was involved in the host immune response and in the generation of secondary metabolites such as antimicrobial peptides and phenoloxidase.
- Subjects
HEMOCYANIN; BIOSYNTHESIS; DIGESTIVE organ blood vessels; GLYCOPROTEINS; IN situ hybridization; IMMUNOHISTOCHEMISTRY techniques; MOLECULAR genetics; IMMUNE response
- Publication
Cell & Tissue Research, 2010, Vol 342, Issue 3, p423
- ISSN
0302-766X
- Publication type
Article
- DOI
10.1007/s00441-010-1057-6