Low-molecular-weight constituents of isolated insulin-secretory granules. Bivalent cations, adenine nucleotides and inorganic phosphate
- 15 February 1983
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 210 (2), 297-305
- https://doi.org/10.1042/bj2100297
Abstract
The concentrations of Zn2+, Ca2+, Mg2+, Pi and adenine nucleotides were determined in insulin-secretory granules prepared from a transplantable rat insulinoma. Differential and density-gradient centrifugation analyses revealed that Zn2+ in this tissue was principally localized in the secretory granule, a 2nd major fraction being found in association with cytosolic proteins. Pi was principally recovered in the latter fraction, whereas Ca2+ and Mg2+ were more widely distributed. Intragranular ion-distribution experiments suggested that Zn2+ was complexed mainly to insulin and its precursor forms and remained in the granule in an insoluble state. The Zn2+/insulin ratio (0.54) was greater than that expected for insulin molecules having 2 centrally coordinated Zn2+ atoms/hexamer, but less than the maximal Zn2+-binding capacity of the molecule. Most of the granular Ca2+, Mg2+ and Pi was released in a soluble form when granules were disrupted by sonication. Simulation in vitro of the ionic composition of the granule suggested that up to 90% of its Ca2+ was complexed to Pi and adenine nucleotides. Granular macromolecules also bound Ca2+, as shown by equilibrium-dialysis studies of granule lysates. However, such binding was displaced by Mg2+. Examination of the efflux of Ca2+ from granules incubated in iso-osmotic suspensions at 37.degree. C suggested that the passive permeability of the granule membrane to Ca2+ was very low. Nevertheless, more than 50% of the granular Ca2+ was rapidly released in an ionized form on hypo-osmotic or detergent-induced disruption of the granule membrane. This may represent a potentially mobilizable pool of Ca2+ in vivo.This publication has 37 references indexed in Scilit:
- The electron microscopic localization of cations to pancreatic islets of langerhans and their possible role in insulin secretionJournal of Ultrastructure Research, 1973
- Fluorescamine: A Reagent for Assay of Amino Acids, Peptides, Proteins, and Primary Amines in the Picomole RangeScience, 1972
- Monoamines in the pancreatic islets of the mouseDiabetologia, 1971
- Preparation and properties of plasma membrane and endoplasmic reticulum fragments from isolated rat fat cellsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1971
- Specific inhibition of mitochondrial Ca++ transport by ruthenium redBiochemical and Biophysical Research Communications, 1971
- Interaction of zing with proinsulinBiochemical and Biophysical Research Communications, 1970
- A Method for the Immunoassay of InsulinDiabetes, 1968
- AN ULTRASTRUCTURAL STUDY OF THE DISTRIBUTION OF HEAVY METALS IN THE PANCREATIC ISLETS AS REVEALED BY THE SULFIDE SILVER METHODActa Pathologica Microbiologica Scandinavica, 1968
- AN ELECTRON-TRANSPORT SYSTEM ASSOCIATED WITH THE OUTER MEMBRANE OF LIVER MITOCHONDRIAThe Journal of cell biology, 1967
- A new micromethod for the colorimetric determination of inorganic phosphateClinica Chimica Acta; International Journal of Clinical Chemistry, 1966