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Photosensory transduction in the flagellated alga, Euglena gracilis. II. Evidence that blue light effects alteration in Na+/K+ permeability of the photoreceptor membrane.

1. The blue light-induced cell tumbling behavior (the step-down photophobic response) and the accumulation of cells into a blue light trap (photoaccumulation) were investigated in Euglena. Dose response plots for these phenomena which we collectively term 'photobehavior' show both threshold and saturation characteristics. 2. NaCl effects apparent elevation in the photosensitivity of the cell as evidenced by alteration of the dose response plot character and lowering of the light intensity saturation level. 3. NaCl and ouabain enhance the duration of the photophobic responses and the rate of photoaccumulation. KCl and NH4Cl have lesser or inhibitory effects. 4. Choline chloride reduces the duration of the photophobic responses and the rate of photoaccumulation. 5. KCl reduces the enhancement of photobehavior induced by NaCl and at constant chloride concentration, photobehavior is unaffected by the relative KCl and NaCl concentrations. 6. Antagonists of voltage-dependent, monovalent cation fluxes in membranes (tetrodotoxin, procaine, tetraethylammonium, 4-aminopyridine) do not alter photobehavior. 7. The results suggest a role for a photoreceptor membrane-located transport system for Na+/K+ as a key step in control of the intraflagellar free Ca/+ levels that determine the photobehavior mediated by flagellar reorientation.

Cell Movement↗

Purification and properties of nucleic acids from an unusual cytoplasmic organelle in the flagellate protozoan Crithidia oncopelti.

A simple, rapid method for preparing bipolar bodies from sonicated (rithidia oncopelti cells, with a yield of 2-5%, is described. Apart from 2-4% contamination with unbroken cells the fraction was considered pure with respect to contamination by other nucleic acid-containing organelles, as judged by light and electron microscopy. A light satellite DNA, f bouyant density 1.695 g/ml in neutral CsCl, and derived from the bipolar body, had a Tm of 81.6 degrees C in0.15 M NaCl/0.015 M sodium citrate (pH 7.0) and a kinetic complexity of 2.7 with 109. The bipolar body fraction also contained ribonucleoprotein particles with and s20,w of 67 S, in contrast to cytoplasmic ribosomes (87 S). Bipolar body ribosomes contained rRNA components which migraged coincidentally with Escherichia coli rRNA (molecular weights 1.07 with 10-6 and 0.56 with 10-6) on polyacrylamide gel electrophoresis. Cytoplasmic ribosomes contained rRNAs of molecular weights 1.30 with 10-6 and 0.83 with 10-6. Bipolar body rRNA accounted for up to 10% of the rRNA extracted from cells. The properties of these bipolar body nucleic acids provide good evidence for the bacterial nature of this subcellular component.

Animals↗