Molecular Biology of the Plasma Membrane — Perspectives

1989 ◽  
pp. 376-402
Author(s):  
P. Kjellbom ◽  
J. Chory ◽  
C. J. Lamb
1989 ◽  
Vol 1 (10) ◽  
pp. 953
Author(s):  
Michael R. Sussman ◽  
Jeffrey F. Harper

2006 ◽  
Vol 5 (1) ◽  
pp. 45-56 ◽  
Author(s):  
Raul Gainetdinov ◽  
Marc Caron ◽  
Jean-Martin Beaulieu ◽  
Tatyana Sotnikova

Zygote ◽  
2008 ◽  
Vol 16 (2) ◽  
pp. 179-186 ◽  
Author(s):  
S.H. Chen ◽  
Y.H. Yang ◽  
J.P. Liao ◽  
A.X. Kuang ◽  
H.Q. Tian

SummaryEgg cells of Torenia fournieri were isolated from embryo sacs 1 day after anthesis using enzymatic digestion or mechanical dissection. About 5% of the egg cells and zygotes (2–3 from 50 ovules) could be mechanically dissected within 2 h. When 0.1% cellulase and 0.1% pectinase were added to the mannitol isolation solution, about 18% of the egg cells (8–10 from 50 ovules) could be isolated within 2 h. The egg cells isolated by mechanical dissection could be used for in vitro fertilization studies without any of the potentially deleterious effects of the enzymes on the plasma membrane of egg cell. The egg cells isolated using enzymatic digestion could be used in the study of the molecular biology of female gamete because more egg cells could be isolated with this technique. Using enzymatic digestion, over 10 zygotes from 50 ovules (over 20%) were isolated from the pollinated ovules. Coupled with our successful isolation of mature sperm cells, the isolation of egg cells of T. fournieri will make in vitro fertilization possible in a dicotyledon plant.


1998 ◽  
Vol 78 (4) ◽  
pp. 969-1054 ◽  
Author(s):  
MANUEL PALACÍN ◽  
RAÚL ESTÉVEZ ◽  
JOAN BERTRAN ◽  
ANTONIO ZORZANO

Palacı́n, Manuel, Raúl Estévez, Joan Bertran, and Antonio Zorzano. Molecular Biology of Mammalian Plasma Membrane Amino Acid Transporters. Physiol. Rev. 78: 969–1054, 1998. — Molecular biology entered the field of mammalian amino acid transporters in 1990–1991 with the cloning of the first GABA and cationic amino acid transporters. Since then, cDNA have been isolated for more than 20 mammalian amino acid transporters. All of them belong to four protein families. Here we describe the tissue expression, transport characteristics, structure-function relationship, and the putative physiological roles of these transporters. Wherever possible, the ascription of these transporters to known amino acid transport systems is suggested. Significant contributions have been made to the molecular biology of amino acid transport in mammals in the last 3 years, such as the construction of knockouts for the CAT-1 cationic amino acid transporter and the EAAT2 and EAAT3 glutamate transporters, as well as a growing number of studies aimed to elucidate the structure-function relationship of the amino acid transporter. In addition, the first gene ( rBAT) responsible for an inherited disease of amino acid transport (cystinuria) has been identified. Identifying the molecular structure of amino acid transport systems of high physiological relevance (e.g., system A, L, N, and x−c) and of the genes responsible for other aminoacidurias as well as revealing the key molecular mechanisms of the amino acid transporters are the main challenges of the future in this field.


1989 ◽  
Vol 1 (10) ◽  
pp. 953-960 ◽  
Author(s):  
M R Sussman ◽  
J F Harper

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