Differential centrifugation, calcium precipitation, and ultrasonic disruption of midgut cells of Erinnyis ello caterpillars. Purification of cell microvilli and inferences concerning secretory mechanisms
- 31 January 1986
- journal article
- research article
- Published by Canadian Science Publishing in Canadian Journal of Zoology
- Vol. 64 (2) , 490-500
- https://doi.org/10.1139/z86-073
Abstract
Subcellular fractions of the cells from the first and last third of midguts from Erinnyis ello caterpillars were obtained by conventional homogenization, followed by differential centrifugation or differential calcium precipitation, as well as by partial ultrasonic disruption. Aminopeptidase was enriched in the subcellular fractions, which in the electron microscope display mainly microvilli from the columnar cells (obtained by differential centrifugation and ultrasonic disruption), and also in the microvilli fraction obtained by differential precipitation. To account for the enzyme activities that sedimented with vesicles displaying brush borders, major amounts of the soluble glycosidases (cellobiase, N-acetylglucosaminidase, maltase, and trehalase) are assumed to be loosely bound to the cell glycocalyx, from where they are set free by homogenization and (or) freezing–thawing. Intracellular glycosidases seem to be bounded by membranes, which sediment together with vesicles that resemble secretory vesicles. The soluble form of amylase occurred mainly associated with the microvilli of anterior midgut cells and is supposed to be contained inside small vesicles, which are seen budding along columnar cell microvilli and fusing one with the other and with the tips of the microvilli from the anterior midgut cells. Secretory mechanisms are discussed in the light of the evidence that the posterior midgut secretes whereas the anterior midgut absorbs water.This publication has 16 references indexed in Scilit:
- A modified procedure for the rapid preparation of efficiently transporting vesicles from small intestinal brush border membranes. Their use in investigating some properties of d-glucose and choline transport systemsPublished by Elsevier ,2002
- Formation of membrane-bounded secretory granules in the midgut epithelium of a termite, Cubitermes severus, and a possible intercellular route of dischargeCell and tissue research, 1982
- Intracellular distribution of hydrolases in midgut caeca cels from an insect with emphasis on plasma membrane-bound enzymesComparative Biochemistry and Physiology Part B: Comparative Biochemistry, 1980
- The morphology and fine structure of the larval midgut of a moth (Manduca sexta) in relation to active ion transportTissue and Cell, 1979
- Distribution of digestive enzymes among the endo- and ectoperitrophic spaces and midgut cells of Rhynchosciara and its physiological significanceJournal of Insect Physiology, 1979
- Alkaline proteases in the midgut tissue and digestive fluid of the silkworm, Bombyx moriInsect Biochemistry, 1976
- Colorimetric Assay with l-Lactate, NAD Phenazine Methosulphate and INTPublished by Elsevier ,1974
- The Biochemistry of Sugars and Polysaccharides in InsectsPublished by Elsevier ,1967
- Tissue fractionation studies. 6. Intracellular distribution patterns of enzymes in rat-liver tissueBiochemical Journal, 1955
- PROTEIN MEASUREMENT WITH THE FOLIN PHENOL REAGENTJournal of Biological Chemistry, 1951