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Distribution of immunoreactive Tamm-Horsfall protein in various species in the vertebrate classes

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Abstract

A sheep antibody to human Tamm-Horsfall protein, the major protein in normal urine, was used in an immunohistological study of organs of 48 species of vertebrate animals, representing the classes Mammalia, Aves, Reptilia, Amphibia, Osteichthyes and Chondrichthyes. Immunoreacvity was shown in the thick limb of the loop of Henle in the kidney of mammals, but there was no reactivity with tissues of birds or reptiles. Superficial layers of the skin of several amphibians and fish, superficial layers of the oral mucosa and gills of fish, and the distal tubules of the kidney of some amphibians, reacted with the antibody. Immunoreactivity with mammalian kidney was removed by passage of the antibody down an immunoadsorption column coated with human Tamm-Horsfall protein, and amphibian immunoreactivity was removed by incubation of the antibody with material prepared from frogs in the same way as Tamm-Horsfall protein. These findings suggest that immunoreactive Tamm-Horsfall protein appeared early in vertebrate phylogeny, initially in skin and gills and later in kidney, and that although conserved in evolution, it shows antigenic differences between amphibians and mammals. Its distribution is consistent with the hypothesis that it acts as a waterproofing agent.

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References

  • Dantzler WH, Braun EJ (1980) Comparative nephron functio in reptiles, birds, and mammals. Am J Physiol 239:R197-R213

    Google Scholar 

  • Heyderman E (1979) Immunoperoxidase technique in histopathology: applications, methods, and controls. J Clin Pathol 32:971–978

    Google Scholar 

  • Howie AJ (1987) Tamm-Horsfall protein outside the kidney. J Pathol 153:399–404

    Google Scholar 

  • Howie AJ, Lote CJ, Hillis AN (1991) Immunoreactive Tamm-Horsfall protein in the kidney and skin of the frog Rana temporaria. Cell Tissue Res 263:585–587

    Google Scholar 

  • Kumar S, Muchmore A (1990) Tamm-Horsfall protein-uromodulin (1950–1990). Kidney Int 37:1395–1401

    Google Scholar 

  • Smith HW (1931) The absorption and excretion of water and salts by the elasmobranch fishes. 2. Marine elasmobranchs. Am J Physiol 98:296–310

    Google Scholar 

  • Stoner LC (1977) Isolated, perfused amphibian renal tubules: the diluting segment. Am J Physiol 233:F438-F444

    Google Scholar 

  • Tamm I, Horsfall FL (1950) Characterization and separation of an inhibitor of viral hemagglutination present in urine. Proc Soc Exp Biol Med 74:108–114

    Google Scholar 

  • Tamm I, Horsfall FL (1952) A mucoprotein derived from human urine which reacts with influenza, mumps, and Newcastle disease viruses. J Exp Med 95:71–97

    Google Scholar 

  • Wallace AC, Nairn RC (1971) Tamm-Horsfall protein in kidneys of human embryos and foreign species. Pathology 3:303–310

    Google Scholar 

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Howie, A.J., Lote, C.J., Cunningham, A.A. et al. Distribution of immunoreactive Tamm-Horsfall protein in various species in the vertebrate classes. Cell Tissue Res 274, 15–19 (1993). https://doi.org/10.1007/BF00327980

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  • DOI: https://doi.org/10.1007/BF00327980

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