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H Plattner

Publications and source records attributed to H Plattner.

At least 127 records · Page 7Linked to original sources

Tracer and freeze-etching analysis of intra-cellular membrane-junctions in Paramecium with a note on a new heme-nonapeptide tracer.

In paramecia the membranes of alveoli and trichocysts are permanently connected to the cell membrane by membrane-junctions, which consist of membrane-intercalated particles in a regular geometrical arrangement. Trichocysts contain secretory material discharged by exocytosis. In unfixed or fixed cells these two compartments were impermeable to the following tracers: To "microperoxidases", i.e. a cytochrome c-derived heme-nonapeptide and a heme-undecapeptide (WM approximately 1650, 1900) applied in vivo, as well as to lanthanum and cytochrome c used during (La) or after (cytochrome c) fixation. The heme-nonapeptide was prepared by TPCK trypsin digestion of cytochrome c and subsequent purification by Sephadex gel chromatography--a simple and inexpensive new procedure resulting in preparations of high yield and purity. Tracers entered alveoli only when the plasmalemma and the alveolar membranes ruptured upon glutardialdehyde fixation. In no case were transmembraneous channels detectable in regions containing membrane-intercalated particles; this holds true for all tracers used and for freeze-fracture replicas obtained by tantalum-tungsten evaporation. With regard to attachment sites over trichocysts our results do not support the assumptions by others according to which exocytosis would be driven by an osmotic shift via transmembraneous channels (which would be analogous to inter-cellular coupling phenomena mediated by gap-junctions), unless such channels would be assumed to operate as carriers rather than via diffusion. Tracers did not penetrate trichocysts before exocytosis occurred. The functional role of membrane-intercalated particles on trichocyst attachments remains unclear. Despite some resemblance with gap-junctions all types of intra-cellular membrane-junctions investigated are functionally "tight" at the level of "resolution" obtained with tantalumtungsten-shadowing and with the tracers used.

Amino Acid Sequence↗

X-ray microanalysis of calcium binding sites in Paramecium with special reference to exocytosis.

In Paramecium cells Ca++-stimulated triggering of the exocytosis of secretory vesicles ("trichocysts") was achieved by ionophores X-537 A or A 23187. Under triggering conditions electron dense deposits were present in some "resting" trichocysts and regularly in discharging trichocysts; upon subsequent fixation deposits occurred on the trichocyst membrane (on the inner side or within the membrane) and on the "inner lamellar sheath" from where deposits seemed to "radiate" into the secretory materials. Similar results were obtained with glutardialdehyde fixation alone which also triggers exocytosis but only at low concentrations. Element analysis by energy dispersive x-ray microanalysis ascertained the presence of Ca and P in deposits occurring in trichocysts. Those "resting" trichocysts which were devoid of deposits did not contain Ca or P enriched. Hence, an abrupt Ca++-influx into individual trichocysts just before exocytosis seems to be involved in the triggering mechanism, possible in combination with the sudden activation of an ATPase system localized at those sites of the trichocysts which primarily contain the deposits. When paramecia were treated only with Ca++ and then fixed with OsO4 plus oxalate or merely with glutardialdehyde, electron scattering deposits were formed also on the inner side of the cell membrane and within the ciliary shaft (but rarely in trichocysts). Deposits obtained on cilia (including "ciliary granule plaques") also contained Ca, P and S. Cells contain osmiophilic "calcium-storing vacuoles" which were selectively rich in Ca and S but devoid of P.

Animals↗

Ciliary granule plaques: membrane-intercalated particle aggregates associated with Ca2+-binding sites in paramecium.

In Paramecium nine rectangular aggregates of membrane-intercalated particles surround the freeze-cleaved membrane of the ciliary base. These "ciliary granule plaques" occur independently of the "ciliary necklace" which is observed in a more basal position on some cilia. In each individual plaque the approximately 10 nm large granules are arranged in a square grid pattern: the granules of one plaque invariably form 3 vertical rows (number of horizontally arranged particles per row: Nh = 3) and 3-6 horizontal rows (mean value fos intrahepatic tributaries then can be approached under direct vision in a relatively bloodless field for safe, accurate liquation and/or reconstruction.

Animals↗

Freeze etching of cells without cryoprotectants.

The technique of spray-freeze etching was applied to unicellular organisms. The superior freezing rates obtainable with this method gave excellent cryofixation on Chlorella, Euglena, and spermatozoa without the use of antifreeze agents, and cell damage due to ice crystal formation was never observed. In many instances the resultant morphology differed significantly from that obtained from glycerol-treated, freeze-etched cells. Furthermore, viability studies of spray-frozen Chlorella compared favorably with cells frozen by other methods.

Animals↗