Nonhepatic origin of notothenioid antifreeze reveals pancreatic synthesis as common mechanism in polar fish freezing avoidance
- 5 July 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (27) , 10491-10496
- https://doi.org/10.1073/pnas.0603796103
Abstract
Phylogenetically diverse polar and subpolar marine teleost fishes have evolved antifreeze proteins (AFPs) or antifreeze glycoproteins (AFGPs) to avoid inoculative freezing by internalized ice. For over three decades since the first fish antifreeze (AF) protein was discovered, many studies of teleost freezing avoidance showed hepatic AF synthesis and distribution within the circulation as pivotal in preventing the blood, and therefore the fish, from freezing. We have uncovered an important twist to this long-held paradigm: the complete absence of liver synthesis of AFGPs in any life stage of the Antarctic notothenioids, indicating that the liver plays no role in the freezing avoidance in these fishes. Instead, we found the exocrine pancreas to be the major site of AFGP synthesis and secretion in all life stages, and that pancreatic AFGPs enter the intestinal lumen via the pancreatic duct to prevent ingested ice from nucleating the hyposmotic intestinal fluids. AFGPs appear to remain undegraded in the intestinal milieu, and the composition and relative abundance of intestinal AFGP isoforms are nearly identical to serum AFGPs. Thus, the reabsorption of intact pancreas-derived intestinal AFGPs, and not the liver, is the likely source of circulatory AFGPs in notothenioid fishes. We examined diverse northern fish taxa and Antarctic eelpouts with hepatic synthesis of bloodborne AF and found that they also express secreted pancreatic AF of their respective types. The evolutionary convergence of this functional physiology underscores the hitherto largely unrecognized importance of intestinal freezing prevention in polar teleost freezing avoidance, especially in the chronically icy Antarctic waters.Keywords
This publication has 35 references indexed in Scilit:
- Freezing resistance of antifreeze-deficient larval Antarctic fishJournal of Experimental Biology, 2006
- Antifreeze activity in the gastrointestinal fluids ofArctogadus glacialis(Peters 1874) is dependent on food typeJournal of Experimental Biology, 2005
- Annual warming episodes in seawater temperatures in McMurdo Sound in relationship to endogenous ice in notothenioid fishAntarctic Science, 2003
- Absorption of macromolecular proteins by the rectal epithelium of the Antarctic fish Notothenia neglectaCanadian Journal of Zoology, 1998
- Skin Antifreeze Protein Genes of the Winter Flounder, Pleuronectes americanus, Encode Distinct and Active Polypeptides without the Secretory Signal and ProsequencesPublished by Elsevier ,1996
- Antifreeze peptide heterogeneity in an antarctic eel pout includes an unusually large major variant comprised of two 7 kDa type III AFPs linked in tandemBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1995
- Renal glomerular evolution in Antarctic notothenioid fishesJournal of Fish Biology, 1986
- Year-round presence of high levels of plasma antifreeze peptides in a temperate fish, ocean pout (Macrozoarces americanus)Canadian Journal of Zoology, 1985
- The histology and ultrastructure of the liver of Atlantic croaker Micropogon undulatus L.Journal of Fish Biology, 1982
- Characterization of glycoprotein antifreeze biosynthesis in isolated hepatocytes fromPagothenia borchgrevinkiJournal of Experimental Zoology, 1982