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Proceedings. Biological Sciences
|
March 22, 1991
Quantal release of Ca2+ from intracellular stores by InsP3: tests of the concept of control of Ca2+ release by intraluminal Ca2+
R T Tregear, A P Dawson, R F Irvine
The Biochemical Journal
|
March 1, 1986
The effect of GTP on inositol 1,4,5-trisphosphate-stimulated Ca2+ efflux from a rat liver microsomal fraction. Is a GTP-dependent protein phosphorylation involved?
A P Dawson, J G Comerford, D V Fulton
The Biochemical Journal
|
September 1, 1995
Estimation of the free [Ca2+] gradient across endoplasmic reticulum membranes by a null-point method
A P Dawson, G T Rich, J W Loomis-Husselbee
Cellular Signalling
|
March 1, 1995
The effects of N-ras oncogene expression on PDGF-BB stimulated responses in cultured mouse myoblasts
H Zeytinoğlu, S L Griffiths, A P Dawson, et al.
The Biochemical Journal
|
March 15, 1995
Effects of CoA and acyl-CoA on Ca(2+)-permeability of endoplasmic-reticulum membranes from rat liver
G T Rich, J G Comerford, S Graham, et al.
Biochemical and Biophysical Research Communications
|
March 31, 1989
ras p21 and other Gn proteins are detected in mammalian cell lines by [gamma-35S]GTP gamma S binding
J G Comerford, J R Gibson, A P Dawson, et al.
The Biochemical Journal
|
May 1, 1989
Inositol 1,3,4,5-tetrakisphosphate causes release of Ca2+ from permeabilized mouse lymphoma L1210 cells by its conversion into inositol 1,4,5-trisphosphate
P J Cullen, R F Irvine, B K Drøbak, et al.
The Journal of Biological Chemistry
|
May 15, 1987
Potassium-mediated stimulation of hepatic glycogenolysis
C E Hill, J S Pryor, M S Olson, et al.
Cellular Signalling
|
December 1, 2001
Tissue distribution of GAP1(IP4BP) and GAP1(m): two inositol 1,3,4,5-tetrakisphosphate-binding proteins
T J McNulty, A J Letcher, A P Dawson, et al.
Plant Physiology
|
May 1, 1988
Inositol-containing lipids in suspension-cultured plant cells: an isotopic study
B K Drøbak, I B Ferguson, A P Dawson, et al.
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Search research articles
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Showing results (41-50 of 66) with videos related to
Sort By:
Page
of 7
Proceedings. Biological Sciences
|
March 22, 1991
Quantal release of Ca2+ from intracellular stores by InsP3: tests of the concept of control of Ca2+ release by intraluminal Ca2+
R T Tregear, A P Dawson, R F Irvine
The Biochemical Journal
|
March 1, 1986
The effect of GTP on inositol 1,4,5-trisphosphate-stimulated Ca2+ efflux from a rat liver microsomal fraction. Is a GTP-dependent protein phosphorylation involved?
A P Dawson, J G Comerford, D V Fulton
The Biochemical Journal
|
September 1, 1995
Estimation of the free [Ca2+] gradient across endoplasmic reticulum membranes by a null-point method
A P Dawson, G T Rich, J W Loomis-Husselbee
Cellular Signalling
|
March 1, 1995
The effects of N-ras oncogene expression on PDGF-BB stimulated responses in cultured mouse myoblasts
H Zeytinoğlu, S L Griffiths, A P Dawson, et al.
The Biochemical Journal
|
March 15, 1995
Effects of CoA and acyl-CoA on Ca(2+)-permeability of endoplasmic-reticulum membranes from rat liver
G T Rich, J G Comerford, S Graham, et al.
Biochemical and Biophysical Research Communications
|
March 31, 1989
ras p21 and other Gn proteins are detected in mammalian cell lines by [gamma-35S]GTP gamma S binding
J G Comerford, J R Gibson, A P Dawson, et al.
The Biochemical Journal
|
May 1, 1989
Inositol 1,3,4,5-tetrakisphosphate causes release of Ca2+ from permeabilized mouse lymphoma L1210 cells by its conversion into inositol 1,4,5-trisphosphate
P J Cullen, R F Irvine, B K Drøbak, et al.
The Journal of Biological Chemistry
|
May 15, 1987
Potassium-mediated stimulation of hepatic glycogenolysis
C E Hill, J S Pryor, M S Olson, et al.
Cellular Signalling
|
December 1, 2001
Tissue distribution of GAP1(IP4BP) and GAP1(m): two inositol 1,3,4,5-tetrakisphosphate-binding proteins
T J McNulty, A J Letcher, A P Dawson, et al.
Plant Physiology
|
May 1, 1988
Inositol-containing lipids in suspension-cultured plant cells: an isotopic study
B K Drøbak, I B Ferguson, A P Dawson, et al.
Page
of 7