X-ray microanalysis of elements in frozen-hydrated sections of an electrogenic K+ transport system: The posterior midgut of tobacco hornworm (Manduca sexta) in vivo andin vitro
- 1 October 1984
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 77 (3), 223-241
- https://doi.org/10.1007/bf01870571
Abstract
Summary The lepidopteran midgut is a model for the oxygendependent, electrogenic K+ transport found in both alimentary and sensory tissues of many economically important insects. Structural and biochemical evidence places the K+ pump on the portasome-studded apical plasma membrane which borders the extracellular goblet cavity. However, electrochemical evidence implies that the goblet cell K+ concentration is less than 50mm. We used electron probe X-ray microanalysis of frozenhydrated cryosections to measure the concentration of Na, Mg, P, S, Cl, K, Ca and H2O in several subcellular sites in the larval midgut ofManduca sexta under several experimental regimes. Na is undetectable at any site. K is at least 100mm in the cytoplasm of all cells. Typicalin vivo values (mm) for K were: blood, 25; goblet and columnar cytoplasm, 120; goblet cavity, 190; and gut lumen, 180. The high K concentration in the apically located goblet cavity declined by 100mm under anoxia. Both cavity and gut fluid are Cl deficient, but fixed negative charges may be present in the cavity. We conclude that the K+ pump is sited on the goblet cell apical membrane and that K+ follows a nonmixing pathway via only part of the goblet cell cytoplasm. The cavity appears to be electrically isolated in alimentary tissues, as it is in sensory sensilla, thereby allowing a PD exceeding 180 mV (lumen positive) to develop across the apical plasma membrane. This PD appears to couple K+ pump energy to nutrient absorption and pH regulation.This publication has 56 references indexed in Scilit:
- Comparative Ultrastructure of Arthropod Transporting EpitheliaAmerican Zoologist, 1984
- Intracellular K+ activities and cell membrane potentials in a K+-transporting epithelium, the midgut of tobacco hornoworm (Manduca sexta)The Journal of Membrane Biology, 1982
- Portasomes as Coupling Factors in Active Ion Transport and Oxidative PhosphorylationAmerican Zoologist, 1981
- THE ROLE OF CYCLIC NUCLEOTIDES AND CALCIUM IN THE REGULATION OF CHLORIDE TRANSPORTAnnals of the New York Academy of Sciences, 1980
- Adaptive Significance of Midgut pH in Larval LepidopteraThe American Naturalist, 1980
- ELECTRON MICROPROBE X‐RAY ANALYSIS OF CALCIUM*Annals of the New York Academy of Sciences, 1978
- Quantitative relationship between active sodium transport, expansion of endoplasmic reticulum and specialized vacuoles (“scalloped sacs”) in the outermost living cell layer of the frog skin epithelium (Rana temporaria)The Journal of Membrane Biology, 1975
- Electrical Potential Differences and Electromotive Forces in Epithelial TissuesThe Journal of general physiology, 1972
- ACTIVE TRANSPORT BY THE CECROPIA MIDGUTThe Journal of cell biology, 1966
- A COAT OF REPEATING SUBUNITS ON THE CYTOPLASMIC SURFACE OF THE PLASMA MEMBRANE IN THE RECTAL PAPILLAE OF THE BLOWFLY, CALLIPHORA ERYTHROCEPHALA (MEIG.), STUDIED IN SITU BY ELECTRON MICROSCOPYThe Journal of cell biology, 1966