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Biol Bull 152: 295-310. (April 1977)
© 1977 Marine Biological Laboratory
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CHARACTERISTICS OF INFLUX AND NET FLUX OF AMINO ACIDS IN MYTILUS CALIFORNIANUS

STEPHEN H. WRIGHT 1 and GROVER C. STEPHENS 1

1 Department of Developmental and Cell Biology, University of California, Irvine, California, 92717 U. S. A.

1. Intact mussels and an in vitro preparation of isolated gill tissue were employed to study characteristics of the influx and net flux of amino acids in Mytilus californianus.

2. The kinetics of influx of 14C-labelled amino acids were complicated by the presence of a rapidly labelled extracellular compartment.

3. Correction of influx data for the extracellular compartment revealed influx of 14C-cycloleucine and 14C-glycine to be mediated by a transport mechanism adequately described by Michaelis-Menten kinetics. Passive diffusion plays no significant role in influx.

4. Influx and net flux of glycine into intact Mytilus were examined. From high concentrations (> 20 µM) the influx of 14C-glycine was equivalent to the net influx of primary amine as determined by fluorescamine. At low ambient concentrations (< 20 µM), influx of 14C-glycine occurred more rapidly than net influx as determined by fluorescamine. The data suggest that influx of labelled substrate is accompanied by efflux of unknown primary amine(s). In the absence of labelled substrate, efflux continues until a steady-state concentration of the medium is achieved.

5. The rate of influx of 14C-cycloleucine into isolated gill tissue, and the concentration gradient which can be developed by gill tissue are reduced when sodium is replaced in the medium.

6. The efflux of primary amines from isolated gill tissue is stimulated by the replacement of sodium in the medium with choline.

7. The data are consistent with a sodium-coupled mechanism for the transport of amino acid into gill tissue. However, energetic considerations cast doubt on the adequacy of such a mechanism to account fully for the observed trans-epidermal transport.




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D. T. MANAHAN, S. H. WRIGHT, G. C. STEPHENS, and M. A. RICE
Transport of Dissolved Amino Acids by the Mussel, Mytilus edulis: Demonstration of Net Uptake from Natural Seawater
Science, March 5, 1982; 215(4537): 1253 - 1255.
[Abstract] [PDF]




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