242
J. A. ALLEN AND M. R. GARRETT
Ackermann, D. and List P. H. (1959a). Erstinaliges Vorkommen von Taurobetain in dcr belcbten Natur. Naturwiasenachqften, 46, 354.
Ackermann, D. and List, P. H. (1959b). ubcr das Verkommcn von Taurobetain,
Taurin und Inosit im Reisenkielselchwanum. Hoppe-Seyler’s 2. phyeiol.
Chem. 311, 78-81.
Ackermann, D. and Pant, R. (1961). Inhaltsstoffe des Schwammes C d y s
nicagenaia. Hoppe-Seyler’a 2. phyaiol. Chem. 326, 197-199.
Ackermarin, D., Holtz, F. and ICutschcr, F. (1924). tfiber die Extraktstoffe von
Eldone mosclda. 2. biol. 80, 155-162.
Allen, J. A. nnd Garrett, M. R. (1971). The excretion of ammonia and urea by
M y a arenaria L. (Mollusca ; Bivalvia). Comp. Biochem. Phyaiol. 38A.
Allen, K. (1961). The cffcct of salinity on the amino acid concentration in Rangia
cun(Pclecypoda). Biol. Bull. mar. bwl. Lab., Woods Hole, 121, 419-424.
Allen, K. and Awapara, R. (1960). Metabolism of sulfur amino acids in M y t i l ~ e
erlulia and Rangia cuneala. Biol. Bull. mar. biol. Lab., Woo& Hole, 118,
An, H. V. and Fromageot. P. (1960). Dosage de la taurine Bchangeable des
organes du rat. Bull. SOC. Chim. biol. 42, 221-226.
Awapara, J. (1953). 2-Aminoethancsulphinic acid : An intermediate in the
oxidation of cysteine in vivo. J. bwl. Chem. 203, 183-188.
Awapara, J. (1956). The taurine concontration of organs from fed and faated rats.
J. biol. Chem. 218, 571-576.
Awapara, J. (1962). Free amino acids in invertebrates : a comparative study of
their distribution and metabolism. I n “ Amino Acid Pools Distribution,
Formation and Function of Free Amino Acids ”. (J. T. Holden, ed.), pp. 158175. Elsevicr, Amsterdam.
Awapara, J. and Wingo, W. J. (1953). On the mechanism of taurine formation
from cystoine in the rat. J. biol. Chem. 203, 189-194.
Awapara, J., Landua, A. J. and Fuerst, R. (1960). Distribution of free amino
acids and related substances in organs of the rat. Bwchim. bwphya. A m ,
Baldwin, E. (1952). “ Dynamic Aspects of Biochemistry ”. 346 pp. Cambridge
University Prcss, London.
Baldwin. E. and Yudkin, W. H. (1950). The annelid phosphagen with a note on
phosphagcn in Echinodermata and Protochordata. Proc. R. SOC. Lond. €3.
Baschcri, M. C. and Fromageot, P. (1962). Concentration de la taurine dans les
divers organes do la Grenouille. C . r. S h n c . SOC. Bwl. 156, 1231.
Bear, R. S. and Schmitt, 0. (1939). Electrolytes in the axoplaam of the giant nerve
fibers of the squid. J. cell. comp. Phyeiol. 14, 205-215.
Bedford, J. J. (1969). The soluble amino acid pool in Siphonaria z e l a n d k : its
composition and the influence of salinity changes. Comp. Bwchem. Phyeiol.
29, 1005-1014.
Bcrgeret, B. and Chatagner, F. (1952). DBsulfinication et d6carboxyhtion
enzymatiqucs de l’acide L-cystBine-sulfinique : la transformation quantitative
en alanino et en hypotaurine. Biochim. biophys. Acta;, 9, 141-146.
Bergerot, B. and Chatagner, F. (1954). Utilisation d’exchangeurs d’ions pour
la separation de quelques acides aminBs form& au cours de la degradation
enzymatiquc de l’acide cysteine sulphinique. Application B l’isolement de
l’hypotaurine (acide 2-amino Bthaneeulfinique). Bwchim. biophys. Acta;,
14, 643-660.
173-182.
457-462.
136, 614-631.
J. A. ALLEN AND M. R. GARRETT
Ackermann, D. and List P. H. (1959a). Erstinaliges Vorkommen von Taurobetain in dcr belcbten Natur. Naturwiasenachqften, 46, 354.
Ackermann, D. and List, P. H. (1959b). ubcr das Verkommcn von Taurobetain,
Taurin und Inosit im Reisenkielselchwanum. Hoppe-Seyler’s 2. phyeiol.
Chem. 311, 78-81.
Ackermann, D. and Pant, R. (1961). Inhaltsstoffe des Schwammes C d y s
nicagenaia. Hoppe-Seyler’a 2. phyaiol. Chem. 326, 197-199.
Ackermarin, D., Holtz, F. and ICutschcr, F. (1924). tfiber die Extraktstoffe von
Eldone mosclda. 2. biol. 80, 155-162.
Allen, J. A. nnd Garrett, M. R. (1971). The excretion of ammonia and urea by
M y a arenaria L. (Mollusca ; Bivalvia). Comp. Biochem. Phyaiol. 38A.
Allen, K. (1961). The cffcct of salinity on the amino acid concentration in Rangia
cun(Pclecypoda). Biol. Bull. mar. bwl. Lab., Woods Hole, 121, 419-424.
Allen, K. and Awapara, R. (1960). Metabolism of sulfur amino acids in M y t i l ~ e
erlulia and Rangia cuneala. Biol. Bull. mar. biol. Lab., Woo& Hole, 118,
An, H. V. and Fromageot. P. (1960). Dosage de la taurine Bchangeable des
organes du rat. Bull. SOC. Chim. biol. 42, 221-226.
Awapara, J. (1953). 2-Aminoethancsulphinic acid : An intermediate in the
oxidation of cysteine in vivo. J. bwl. Chem. 203, 183-188.
Awapara, J. (1956). The taurine concontration of organs from fed and faated rats.
J. biol. Chem. 218, 571-576.
Awapara, J. (1962). Free amino acids in invertebrates : a comparative study of
their distribution and metabolism. I n “ Amino Acid Pools Distribution,
Formation and Function of Free Amino Acids ”. (J. T. Holden, ed.), pp. 158175. Elsevicr, Amsterdam.
Awapara, J. and Wingo, W. J. (1953). On the mechanism of taurine formation
from cystoine in the rat. J. biol. Chem. 203, 189-194.
Awapara, J., Landua, A. J. and Fuerst, R. (1960). Distribution of free amino
acids and related substances in organs of the rat. Bwchim. bwphya. A m ,
Baldwin, E. (1952). “ Dynamic Aspects of Biochemistry ”. 346 pp. Cambridge
University Prcss, London.
Baldwin. E. and Yudkin, W. H. (1950). The annelid phosphagen with a note on
phosphagcn in Echinodermata and Protochordata. Proc. R. SOC. Lond. €3.
Baschcri, M. C. and Fromageot, P. (1962). Concentration de la taurine dans les
divers organes do la Grenouille. C . r. S h n c . SOC. Bwl. 156, 1231.
Bear, R. S. and Schmitt, 0. (1939). Electrolytes in the axoplaam of the giant nerve
fibers of the squid. J. cell. comp. Phyeiol. 14, 205-215.
Bedford, J. J. (1969). The soluble amino acid pool in Siphonaria z e l a n d k : its
composition and the influence of salinity changes. Comp. Bwchem. Phyeiol.
29, 1005-1014.
Bcrgeret, B. and Chatagner, F. (1952). DBsulfinication et d6carboxyhtion
enzymatiqucs de l’acide L-cystBine-sulfinique : la transformation quantitative
en alanino et en hypotaurine. Biochim. biophys. Acta;, 9, 141-146.
Bergerot, B. and Chatagner, F. (1954). Utilisation d’exchangeurs d’ions pour
la separation de quelques acides aminBs form& au cours de la degradation
enzymatiquc de l’acide cysteine sulphinique. Application B l’isolement de
l’hypotaurine (acide 2-amino Bthaneeulfinique). Bwchim. biophys. Acta;,
14, 643-660.
173-182.
457-462.
136, 614-631.
