Fine structure of the elasmobranch renal tubule: Neck and proximal segments of the little skate
- 3 February 1991
- journal article
- Published by Wiley in Journal of Anatomy
- Vol. 190 (2) , 118-132
- https://doi.org/10.1002/aja.1001900203
Abstract
This is the first in a series of studies that examines the renal tubular ultrastructure of elasmobranch fish. Each subdivision of the neck segment and proximal segment of the renal tubule of the little skate (Raja erinacea) has been investigated using electron microscopy of thin sections and freeze‐fracture replicas. Flagellar cells, characterized by long, wavy, flagellar ribbons, were observed in both nephron segments. They were found predominantly in the first subdivision of the neck segment, which suggests that propulsion of the glomerular filtrate is a primary function of this part of the renal tubule. In the non‐flagellar cells of the neck segment (subdivisions I and II), there were bundles of microfilaments, a few apical cell projections, and, in subdivision II, numerous AUtophagosomes. In the proximal segment, the non‐flagellar cells varied in size, being low in subdivision I, cuboidal in II, tall columnar in III, and again low in IV. Apical cell projections were low and scattered in subdivisions I and IV and were highest in III where the basolateral plasma membrane was extremely amplified by cytoplasmic projections. Furthermore, in these cells the mitochondria were numerous with an extensive matrix and short cristae. A network of tubules of the endoplasmic reticulum characterized the apical region of the non‐flagellar cells in subdivisions I, II, and IV. In the late part of subdivision II and the early part of III, the cells were characterized by numerous coated pits and vesicles, large subluminal vacuoles, and basally located dense bodies, all of which are structures involved in receptor‐mediated endocytosis. Freeze‐fracture replicas revealed gap junctions restricted to the cells of the first three subdivisions of the proximal segment. The zonulae occludentes were not different in the neck and proximal segments, being composed of several strands, suggesting a moderately leaky paracellular pathway.Keywords
This publication has 40 references indexed in Scilit:
- Vesicle Recycling and Cell-Specific Function in Kidney Epithelial CellsAnnual Review of Physiology, 1989
- Sorting of mannose 6-phosphate receptors and lysosomal membrane proteins in endocytic vesicles.The Journal of cell biology, 1988
- Mannose 6-phosphate receptors and their role in targeting proteins to lysosomesThe Journal of Membrane Biology, 1988
- Structure of the novel membrane-coating material in proton-secreting epithelial cells and identification as an H+ATPase.The Journal of cell biology, 1987
- A new type of coated vesicular carrier that appears not to contain clathrin: Its possible role in protein transport within the Golgi stackCell, 1986
- The membrane composition of coated pits, microvilli, endosomes, and lysosomes is distinctive in the rat kidney proximal tubule cell.The Journal of cell biology, 1986
- A Renal Countercurrent System in Marine Elasmobranch Fish: A Computer-Assisted ReconstructionScience, 1985
- Formation and turnover of plasma membrane glycoproteins in kidney tubules of young rats and adult mice, as shown by radioautography after an injection of 3H‐fucoseJournal of Anatomy, 1977
- Coated vesicles from pig brain: Purification and biochemical characterizationJournal of Molecular Biology, 1975
- Absorption of I125-labeled homologous albumin by rat kidney proximal tubule cellsJournal of Ultrastructure Research, 1966