Metabolism of acetylcholine in the nervous system of Aplysia californica. II. Reginal localization and characterization of choline uptake

نویسندگان

  • M L Eisenstadt
  • S N Treistman
  • J H Schwartz
چکیده

The choline required for synthesis of acetylcholine is derived exogenously by Aplysia ganglia. Under physiological conditions choline was taken up primarlily by neuropile and nerves and not by cholinergic cell bodies. In addition, compared with their contents of choline acetyltransferase, those components of nervous tissue which contain nerve terminals and axons synthesized acetylcholine far more efficiently. Choline was accumulated by high and low affinity uptake processes; the high affinity process appeared to be characteristic of cholinergic nuerons (Swartz, J. H., M. L. Eisenstadt, and H. Cedar.1975. J. Gen. Physiol. 65:255). The two uptake processes were similarly affected by temperature with a Q10 of 2.8. Both were dependent on a variety of ions in a complicated manner. High affinity uptake seemed to be more dependent on Na+, showed greater inhibition by ouabain, and was selectively inhibited by oxotremorine. We found that the functional state of neurons did not alter uptake of radioactive choline by either process, nor did it change the conversion to radioactive acetylcholine.

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Metabolism of acetylcholine in the nervous system of Aplysia californica. I. Source of choline and its uptake by intact nervous tissue

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Metabolism of Acetylcholine in the Nervous System of Aplysia californica

A S s T RA C T [sH]Choline, injected directly into the major axon of the identified cholinergic neuron R2, was readily incorporated into [SH]acetylcholine. Its metabolic fate was similar to that o f [SH]choline injected into the cell body of R2. Over the range injected, we found that the amounts of acetylcholine formed were proportional to the amounts injected; the synthetic capability was not ...

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Metabolism of Acetylcholine in the Nervous System of Aplysia californica

A S s T RA C T [sH]Choline, injected directly into the major axon of the identified cholinergic neuron R2, was readily incorporated into [SH]acetylcholine. Its metabolic fate was similar to that o f [SH]choline injected into the cell body of R2. Over the range injected, we found that the amounts of acetylcholine formed were proportional to the amounts injected; the synthetic capability was not ...

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Cholinergic neuromuscular synapses in Aplysia have low endogenous acetylcholinesterase activity and a high-affinity uptake system for acetylcholine.

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عنوان ژورنال:
  • The Journal of General Physiology

دوره 65  شماره 

صفحات  -

تاریخ انتشار 1975