246
M. Maffia et al.
5. Cassano G, Maffia M, Vilella S, Storelli C (1988) Effects of membrane
potential on Na + cotransporters in eel intestinal brush border membrane
vesicles: studies with a fluorescent dye. J Membr Bioi 101:225-236
6. Ahearn GA, Storelli C (1994) Use of membrane vesicle techniques to
characterize nutrient transport processes of the teleost gastrointestinal tract.
In: Hochachka P, Mornmsen T (eds) Biochemistry and molecular biology of
fishes. Elsevier, Amsterdam, pp 513-524
7. Storelli C, Vilella S, Romano MP, Maffia M, Cassano G (1989) Brush border
amino acid transport mechanisms in carnivorous eel intestine. Am J Physiol
257:R506-R51O
8. Vilella S, Reshkin SJ, Storelli C, Ahearn GA (1989) Brush border inositol
transport by intestines of carnivorous and herbivorous teleosts. Am J Physiol
256:G50 1-G508
9. Maffia M, Ahearn GA, Vilella S, Zonno V, Storelli C (1993) Ascorbic acid
transport by intestinal brush-border membrane vesicles of the teleost Anguilla
anguilla. Am J PhysioI264:R1248-R1253
10. Maffia M, Verri T, Danieli A, Thamotharan M, Pastore M, Ahearn GA,
Storelli C (1997) H+ -glycyl-L-proline cotransport in brush-border membrane
vesicles of eel (Anguilla anguilla) intestine. Am J PhysioI272:R217-R225
11. Cassano G, Vilella S, Zonno V, Storelli C (1985) Na+/H+ exchange activity is
not present on eel intestinal brush-border membrane vesicles. In: Alvarado F,
Van Os CH (eds) Ion-gradient coupled transport. Elsevier, Amsterdam, pp
282-286
12. Wakabayashi S, Munekazu S, Poussegur J (1997) Molecular physiology of
vertebrate Na+/H+ exchangers. Physiol Reviews 77:51-74
13. Storelli C, Vilella S, Cassano G (1986) Na+-dependent D-glucose and Lalanine transport in eel intestinal brush border membrane vesicles. Am J
Physiol 251 :R463-R469
14. Wright EM (1993) The intestinal Na+-glucose cotransporter. Ann Rev
PhysioI55:575-589
15. Hediger MA, Rhoads DB (1994) Molecular physiology of sodium-glucose
cotransporters. Physiol Rev 74:993-1026
16. Sidell BD, Crockett EL, Driedzic WR (1995) Antarctic fish tissues
preferentially catabolize monoenoic fatty acids. J Exp Zoo1271:73-81
17. Gonzalez-Cabrera PJ, Dowd F, Pedibhotla VK, Rosario R, Stan1eySamuelson D, Petzel D (1995) Enhanced hypo-osmoregulation induced by
warm-acclimation in Antarctic fish is mediated by increased gill and kidney
Na+/K+-ATPase activities. 1. Exp. BioI. 198:2279-2291
18. Sinensky M (1974) Homeoviscous adaptation - a homeostatic process that
regulates the viscosity of membrane lipids in Escherichia coli. Proc. Natl.
Acad Sci USA 71:522-525
19. Hesket KR, Smith GA, Houslay MD, Mc Gill KA, Birdsall NJM, Metcalfe
JC, Warren GB (1976). Annular lipids determine the ATPase activity of a
calcium transport protein complexed with dipalmitoyllecithin. Biochemistry
15:4145-4151.
M. Maffia et al.
5. Cassano G, Maffia M, Vilella S, Storelli C (1988) Effects of membrane
potential on Na + cotransporters in eel intestinal brush border membrane
vesicles: studies with a fluorescent dye. J Membr Bioi 101:225-236
6. Ahearn GA, Storelli C (1994) Use of membrane vesicle techniques to
characterize nutrient transport processes of the teleost gastrointestinal tract.
In: Hochachka P, Mornmsen T (eds) Biochemistry and molecular biology of
fishes. Elsevier, Amsterdam, pp 513-524
7. Storelli C, Vilella S, Romano MP, Maffia M, Cassano G (1989) Brush border
amino acid transport mechanisms in carnivorous eel intestine. Am J Physiol
257:R506-R51O
8. Vilella S, Reshkin SJ, Storelli C, Ahearn GA (1989) Brush border inositol
transport by intestines of carnivorous and herbivorous teleosts. Am J Physiol
256:G50 1-G508
9. Maffia M, Ahearn GA, Vilella S, Zonno V, Storelli C (1993) Ascorbic acid
transport by intestinal brush-border membrane vesicles of the teleost Anguilla
anguilla. Am J PhysioI264:R1248-R1253
10. Maffia M, Verri T, Danieli A, Thamotharan M, Pastore M, Ahearn GA,
Storelli C (1997) H+ -glycyl-L-proline cotransport in brush-border membrane
vesicles of eel (Anguilla anguilla) intestine. Am J PhysioI272:R217-R225
11. Cassano G, Vilella S, Zonno V, Storelli C (1985) Na+/H+ exchange activity is
not present on eel intestinal brush-border membrane vesicles. In: Alvarado F,
Van Os CH (eds) Ion-gradient coupled transport. Elsevier, Amsterdam, pp
282-286
12. Wakabayashi S, Munekazu S, Poussegur J (1997) Molecular physiology of
vertebrate Na+/H+ exchangers. Physiol Reviews 77:51-74
13. Storelli C, Vilella S, Cassano G (1986) Na+-dependent D-glucose and Lalanine transport in eel intestinal brush border membrane vesicles. Am J
Physiol 251 :R463-R469
14. Wright EM (1993) The intestinal Na+-glucose cotransporter. Ann Rev
PhysioI55:575-589
15. Hediger MA, Rhoads DB (1994) Molecular physiology of sodium-glucose
cotransporters. Physiol Rev 74:993-1026
16. Sidell BD, Crockett EL, Driedzic WR (1995) Antarctic fish tissues
preferentially catabolize monoenoic fatty acids. J Exp Zoo1271:73-81
17. Gonzalez-Cabrera PJ, Dowd F, Pedibhotla VK, Rosario R, Stan1eySamuelson D, Petzel D (1995) Enhanced hypo-osmoregulation induced by
warm-acclimation in Antarctic fish is mediated by increased gill and kidney
Na+/K+-ATPase activities. 1. Exp. BioI. 198:2279-2291
18. Sinensky M (1974) Homeoviscous adaptation - a homeostatic process that
regulates the viscosity of membrane lipids in Escherichia coli. Proc. Natl.
Acad Sci USA 71:522-525
19. Hesket KR, Smith GA, Houslay MD, Mc Gill KA, Birdsall NJM, Metcalfe
JC, Warren GB (1976). Annular lipids determine the ATPase activity of a
calcium transport protein complexed with dipalmitoyllecithin. Biochemistry
15:4145-4151.
