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PMID: 6181073 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Ca2+-sequestering smooth endoplasmic reticulum in an invertebrate photoreceptor. I. Intracellular topography as revealed by OsFeCN staining and in situ Ca accumulation.

The Journal of cell biology ·Vol. 93 ·No. 3 ·1982-06-00 ·Pages 839-48

Walz B

Abstract

Two ultrastructural approaches were used in photoreceptor cells of the leech, Hirudo medicinalis, to (a) investigate the intracellular topography of the smooth endoplasmic reticulum (SER) and (b) identify among the various subregions of the SER those which might function as Ca-sequestering sites. When the cells are prefixed with CaCl2-containing glutaraldehyde and postfixed with osmium tetroxide-ferricyanide (OsFeCN), only a part of the total SER is specifically stained. The stained SER cisternae include the submicrovillar cisternae (SMC), subsurface cisternae (SSC), the nuclear envelope, Golgi-associated SER, paracrystalline SER, and SER associated with glycogen areas. An extensive tubular SER cisternal system always remains unstained. When the cells are permeabilized by saponin and subsequently incubated with Ca2+, MgATP, and oxalate, the SMC (Walz, 1979, Eur. J. Cell Biol. 20:83-91), the SSC and the nuclear envelope contain electron-opaque Ca-oxalate precipitates indicating their ability to function as an effective Ca2+ sink. The results show that the very elaborate SER in this photoreceptor cell includes many functionally heterogeneous subregions. Of special physiological significance are those components (SMC and SSC) which are effective in Ca2+-buffering in the immediate vicinity of the plasma membrane.

MeSH Terms
Adenosine Triphosphate/pharmacology Animals Calcium/metabolism Endoplasmic Reticulum/metabolism,ultrastructure Ferricyanides/pharmacology Leeches/ultrastructure Osmium Tetroxide/pharmacology Oxalates/pharmacology Photoreceptor Cells/metabolism,ultrastructure Saponins/pharmacology Staining and Labeling
Chemicals
Ferricyanides Oxalates Saponins Adenosine Triphosphate Osmium Tetroxide Calcium
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Walz B
References (31)
31 references, click to expand
  1. Localization of calcium in presynaptic nerve terminals. An ultrastructural and electron microprobe analysis.
    J Cell Biol. 1980 May;85(2):228-41 PMID: 7372706
  2. Membranes in the mitotic apparatus of barley cells.
    J Cell Biol. 1980 Aug;86(2):490-9 PMID: 7400216
  3. Localization of Ca++-containing antimonate precipitates during mitosis.
    J Cell Biol. 1980 Aug;86(2):500-13 PMID: 7400217
  4. Non-uniform Ca2+ buffer distribution in a nerve cell body.
    Nature. 1980 Aug 21;286(5775):816-7 PMID: 6772974
  5. The correlation of the receptor potential with the light induced transient increase in intracellular calcium-concentration measured by absorption change of arsenazo III injected into Limulus ventral nerve photoreceptor cell.
    Biophys Struct Mech. 1980;6(3):191-208 PMID: 7417687
  6. Structures located at the levels of the Z bands in mouse ventricular myocardial cells.
    Tissue Cell. 1980;12(3):467-89 PMID: 7192018
  7. Membrane circulation in neurons and photoreceptors: some unresolved issues.
    Int Rev Cytol. 1980;67:1-67 PMID: 6161097
  8. How is the cytoplasmic calcium concentration controlled in nerve terminals?
    J Physiol (Paris). 1980 Sep;76(5):459-70 PMID: 6778992
  9. Phosphorylation of heavy sarcoplasmic reticulum vesicles: identification and characterization of three phosphorylated proteins.
    J Membr Biol. 1980 Oct 31;56(3):241-8 PMID: 6779012
  10. Specific perforation of muscle cell membranes with preserved SR functions by saponin treatment.
    J Muscle Res Cell Motil. 1980 Mar;1(1):89-100 PMID: 6262373
  11. Ca2+-sequestering smooth endoplasmic reticulum in an invertebrate photoreceptor. II. Its properties as revealed by microphotometric measurements.
    J Cell Biol. 1982 Jun;93(3):849-59 PMID: 6288735
  12. Movement of palisade in locust retinula cells when illuminated.
    Q J Microsc Sci. 1965 Jun;106(2):131-5 PMID: 5836396
  13. Cell junctions in ommatidia of Limulus.
    J Cell Biol. 1967 May;33(2):365-83 PMID: 6039377
  14. The site of origin of electrical responses in visual cells of the leech, Hirudo medicinalis.
    J Cell Biol. 1969 Jul;42(1):241-52 PMID: 5786983
  15. The effects of intracellular iontophoretic injection of calcium and sodium ions on the light response of Limulus ventral photoreceptors.
    J Gen Physiol. 1972 Jun;59(6):701-19 PMID: 5025746
  16. Changes in intracellular free calcium concentration during illumination of invertebrate photoreceptors. Detection with aequorin.
    J Gen Physiol. 1974 Dec;64(6):643-65 PMID: 4155426
  17. The visual system of the horseshoe crab Limulus polyphemus.
    Int Rev Cytol. 1975;41:285-349 PMID: 1093990
  18. Effects of intracellular injection of calcium buffers on light adaptation in Limulus ventral photoreceptors.
    J Gen Physiol. 1975 Oct;66(4):489-506 PMID: 810540
  19. Role of intracellular calcium and sodium in light adaptation in the retina of the honey bee drone (Apis mellifera, L).
    J Gen Physiol. 1976 Apr;67(4):475-91 PMID: 818341
  20. Smooth endoplasmic reticulum in rat hepatocytes during glycogen deposition and depletion.
    Int Rev Cytol. 1977;48:221-79 PMID: 838551
  21. Detection of light-induced changes of intracellular ionized calcium concentration in Limulus ventral photoreceptors using arsenazo III.
    J Physiol. 1977 May;267(2):299-320 PMID: 17732
  22. Calcium ion, a putative intracellular messenger for light-adaptation in Limulus ventral photoreceptors.
    Biophys Struct Mech. 1977 Jun 29;3(2):141-3 PMID: 407954
  23. Cytochemical staining procedures selective for sarcotubular systems of muscle: modifications and applications.
    J Ultrastruct Res. 1977 Sep;60(3):306-27 PMID: 70538
  24. A quantitative comparison of the effects of intracellular calcium injection and light adaptation on the photoresponse of Limulus ventral photoreceptors.
    J Gen Physiol. 1977 Nov;70(5):591-600 PMID: 591913
  25. Increased intracellular sodium mimics some but not all aspects of photoreceptor adaptation in the ventral eye of Limulus.
    J Gen Physiol. 1977 Nov;70(5):601-20 PMID: 591914
  26. Morphological evidence for calcium stores in photoreceptors of the honeybee drone retina.
    J Ultrastruct Res. 1978 Jun;63(3):237-43 PMID: 682224
  27. Calcium buffering in presynaptic nerve terminals. I. Evidence for involvement of a nonmitochondrial ATP-dependent sequestration mechanism.
    J Gen Physiol. 1978 Jul;72(1):15-41 PMID: 359758
  28. The initiation of excitation and light adaptation in Limulus ventral photoreceptors.
    J Gen Physiol. 1979 Feb;73(2):219-43 PMID: 438771
  29. Calcium measurement in the periphery of an axon.
    J Gen Physiol. 1979 Sep;74(3):393-413 PMID: 479828
  30. Association of glycogen synthase phosphatase and phosphorylase phosphatase activities with membranes of hepatic smooth endoplasmic reticulum.
    J Cell Biol. 1979 Nov;83(2 Pt 1):348-56 PMID: 227915
  31. Subcellular calcium localization and AT0-dependent Ca2+-uptake by smooth endoplasmic reticulum in an invertebrate photoreceptor cell. An ultrastrucutral, cytochemical and X-ray microanalytical study.
    Eur J Cell Biol. 1979 Oct;20(1):83-91 PMID: 160317
Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1982-06-00
Pages
839-48
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2112144
Subset
IM
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