23.11.2013 Views

Amino acid transmitters in the mammalian central nervous system

Amino acid transmitters in the mammalian central nervous system

Amino acid transmitters in the mammalian central nervous system

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

<strong>Am<strong>in</strong>o</strong> Acid Transmitters <strong>in</strong> <strong>the</strong> Mammalian Central Nervous System 177<br />

IVERSEN, L. L., MITCHELL, J. F., NEAL, M. J., SRINIVASAN, V. : The effect of stimulation of <strong>in</strong>hibitory<br />

pathways on <strong>the</strong> release of endogenous 7-arn<strong>in</strong>obutyric <strong>acid</strong> from <strong>the</strong> cat cerebral cortex. Brit.<br />

J. Pharrnacol. 38, 452P (1970).<br />

IVERSEN, L. L., MITCHELL, J. F., SR1NIVASAN, V. : The release of 7-am<strong>in</strong>obutyric <strong>acid</strong> dur<strong>in</strong>g <strong>in</strong>hibition<br />

<strong>in</strong> <strong>the</strong> cat visual cortex. J. Physiol. (Lond.) 212, 519-534 (1971).<br />

IVERSEN, L. L., NEAL, M. J. : The uptake of [3H]GABA by slices of rat cerebral cortex. J. Neurochern.<br />

15, 1141-1149 (1968).<br />

JANKOWSKA, E., LINDSTRt3M, S, : Morphological identification of Renshaw cells. Acta physiol, scand.<br />

81,428-430 0971).<br />

JANKOWSKA, E., LINDSTR6M, S. : Morphology of <strong>in</strong>terneurones mediat<strong>in</strong>g Ia reciprocal <strong>in</strong>hibition of<br />

motoneurones <strong>in</strong> <strong>the</strong> sp<strong>in</strong>al cord of <strong>the</strong> cat. J. Physiol. (Lond.) 226, 805-823 (1972).<br />

JANKOWSKA, E., ROBERTS, W. J.: Synaptic actions of s<strong>in</strong>gle <strong>in</strong>terneurones mediat<strong>in</strong>g reciprocal Ia<br />

<strong>in</strong>hibition of motoneurones. J. Physiol. (Lond.) 222, 623-642 (1972).<br />

JARBOE, C. H., PORTER, L. A., BUCKLER, R. T. : Structural aspects of picrotox<strong>in</strong><strong>in</strong> action. J. Med.<br />

Chem. 11,729-731 (1968).<br />

JASPER, H. H., KHAN, R.T., ELLIOTT, K. A. C.: <strong>Am<strong>in</strong>o</strong> <strong>acid</strong>s released from <strong>the</strong> cerebral cortex<br />

<strong>in</strong> relation to its state of activation. Science 147, 1448-1449 (1965).<br />

JASPER, H. H., KOYAMA, I.: Rate of release of am<strong>in</strong>o <strong>acid</strong>s from <strong>the</strong> cerebral cortex <strong>in</strong> <strong>the</strong> cat<br />

as affected by bra<strong>in</strong>stem and thalamic stimulation. Canad. J. Physiol. Pharmac. 47, 889-905<br />

(1969).<br />

JOHNSON, E. S., ROBERTS, M. H. T., STRAU~HAN, D. W. : <strong>Am<strong>in</strong>o</strong>-<strong>acid</strong> <strong>in</strong>duced depression of cortical<br />

neurones. Brit. J. Pharrnacol. 38, 659-666 (1970).<br />

JOHNSON, J. L.: Glutarnic <strong>acid</strong> as a synaptic transmitter <strong>in</strong> <strong>the</strong> <strong>nervous</strong> <strong>system</strong>. A review. Bra<strong>in</strong><br />

Res. 37, 1-19 (1972a).<br />

JOHNSON, J. L.: An analysis of <strong>the</strong> activities of 3 key enzymes concerned with <strong>the</strong> <strong>in</strong>terconversion<br />

of ~-ketoglutarate and glutamate: correlations with free glutamate levels <strong>in</strong> 20 specific regions<br />

of <strong>the</strong> <strong>nervous</strong> <strong>system</strong>. Bra<strong>in</strong> Res. 45, 205 215 (1972b).<br />

JOHNSON, J. L., APRISON, M. H. : The distribution of glutamic <strong>acid</strong>, a transmitter candidate, and o<strong>the</strong>r<br />

am<strong>in</strong>o <strong>acid</strong>s <strong>in</strong> <strong>the</strong> dorsal sensory neuron of <strong>the</strong> cat. Bra<strong>in</strong> Res. 24, 285-292 (1970).<br />

JOHNSON, J. L., APRISON, M. H. : The distribution of glutamate and total free am<strong>in</strong>o <strong>acid</strong>s <strong>in</strong> thirteen<br />

specific regions of <strong>the</strong> cat <strong>central</strong> <strong>nervous</strong> <strong>system</strong>. Bra<strong>in</strong> Res. 26, 141-148 (1971).<br />

JOHNSTON, G.A.R. : The <strong>in</strong>trasp<strong>in</strong>al distribution of some depressant am<strong>in</strong>o <strong>acid</strong>s. J. Neurochem.<br />

15, 1013 1017(1968).<br />

JOHNSTON, G. A. R. : Convulsions <strong>in</strong>duced <strong>in</strong> 10-day old rats by <strong>in</strong>traperitoneal <strong>in</strong>jection of monosodium<br />

glutamate and related excitant am<strong>in</strong>o <strong>acid</strong>s. Biochem. Pharmacol. 22, 137-140 (1973).<br />

JOHNSTON, G. A. R., BEART, P. M., CURTIS, D.R., GAME, C. J.A., McCuLLOCH, R. M., MACLACHLAN,<br />

R. M. : Bicucull<strong>in</strong>e methochloride as a GABA antagonist. Nature (Lond.) New Biol. 240, 219-220<br />

(1972).<br />

JOHNSTON, G. A. R., CURTIS, D. R. : 7-<strong>Am<strong>in</strong>o</strong>butyrylchol<strong>in</strong>e and <strong>central</strong> <strong>in</strong>hibition. J. Pharm. Pharmacol.<br />

24, 251 (1972).<br />

JOHNSTON, G.A.R., DEGROAT, W.C., CURTIS, D.R.: Tetanus tox<strong>in</strong> and am<strong>in</strong>o <strong>acid</strong> levels <strong>in</strong> cat<br />

sp<strong>in</strong>al cord. J. Neurochern. 16, 797-800 (1969).<br />

JOHNSTON, G. A. R., IVERSEN, L. L. : Glyc<strong>in</strong>e uptake <strong>in</strong> rat <strong>central</strong> <strong>nervous</strong> <strong>system</strong> slices and homogenates:<br />

evidence for different uptake <strong>system</strong>s <strong>in</strong> sp<strong>in</strong>al cord and cerebral cortex. J. Neurochern.<br />

lg, 1951-1961 (1971).<br />

JOHNSTON, G. A. R., VITALI, M. V. " Glyc<strong>in</strong>e-produc<strong>in</strong>g transrn<strong>in</strong>ase activity <strong>in</strong> extracts of sp<strong>in</strong>al cord.<br />

Bra<strong>in</strong> Res. 12, 471-472 (1969a).<br />

JOHNSTON, G. A. R., VITALI, M.V. ; Glyc<strong>in</strong>e : 2-oxoglutarate transarn<strong>in</strong>ase <strong>in</strong> rat cerebral cortex. Bra<strong>in</strong><br />

Res. 15, 201-208 (1969b),<br />

JOHNSTON, G. A. R., VITALI, M.V., ALEXA~qD'~, H. M. : Regional and subcellular distribution studies<br />

on glyc<strong>in</strong>e: 2-oxoglutarate transam<strong>in</strong>ase activity <strong>in</strong> cat sp<strong>in</strong>al cord. Bra<strong>in</strong> Res. 20, 361-367 (1970).<br />

JORDAN, C.C., WEBSTER, R.A. : Release of acetylchol<strong>in</strong>e and 14C-glyc<strong>in</strong>e from <strong>the</strong> cat sp<strong>in</strong>al cord<br />

<strong>in</strong> vivo. Brit. J. Pharmacol. 43, 441P (1971).<br />

KACZMAREK, L. K., AGRAWAL~ H. C., DAV1SON, A. N. : Biochemical studies of taur<strong>in</strong>e <strong>in</strong> <strong>the</strong> develop<strong>in</strong>g<br />

rat bra<strong>in</strong>. Biochern. J. 119, 45~6P (1970).<br />

KACZMAREK, L.K., AGRAWAL, H.C., DAVISON, A.N. : The biochemistry of taur<strong>in</strong>e <strong>in</strong> develop<strong>in</strong>g<br />

rat bra<strong>in</strong>. In: Inherited disorders of sulphur metabolism, eds. N.A.J. Carson and D.N. Ra<strong>in</strong>e,<br />

p. 63-68. London: Churchill-Liv<strong>in</strong>gston 1971.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!