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The Journal of Biological Chemistry
|
April 15, 2000
Single repeat deletion in ApoA-I blocks cholesterol esterification and results in rapid catabolism of delta6 and wild-type ApoA-I in transgenic mice
M G Sorci-Thomas, M Thomas, L Curtiss, et al.
Free Radical Biology & Medicine
|
June 8, 2001
Isoprostane levels in lipids extracted from atherosclerotic arteries of nonhuman primates
M J Thomas, Q Chen, M G Sorci-Thomas, et al.
Arteriosclerosis and Thrombosis : a Journal of Vascular Biology
|
November 1, 1993
Oral contraceptives decrease hepatic cholesterol independent of the LDL receptor in nonhuman primates
P L Colvin, J D Wagner, M D Heuser, et al.
Metabolism: Clinical and Experimental
|
April 29, 1998
Sex steroids increase cholesterol 7alpha-hydroxylase mRNA in nonhuman primates
P L Colvin, J D Wagner, M R Adams, et al.
The Journal of Biological Chemistry
|
August 25, 2000
Structural determination of lipid-bound ApoA-I using fluorescence resonance energy transfer
H Li, D S Lyles, M J Thomas, et al.
The Journal of Biological Chemistry
|
March 14, 1997
Alteration in apolipoprotein A-I 22-mer repeat order results in a decrease in lecithin:cholesterol acyltransferase reactivity
M G Sorci-Thomas, L Curtiss, J S Parks, et al.
Journal of Lipid Research
|
December 6, 2001
Preparation and incorporation of probe-labeled apoA-I for fluorescence resonance energy transfer studies of rHDL
H H Li, M J Thomas, W Pan, et al.
The Journal of Biological Chemistry
|
June 13, 1998
The hydrophobic face orientation of apolipoprotein A-I amphipathic helix domain 143-164 regulates lecithin:cholesterol acyltransferase activation
M G Sorci-Thomas, L Curtiss, J S Parks, et al.
Journal of Lipid Research
|
March 1, 1996
High level secretion of wild-type and mutant forms of human proapoA-I using baculovirus-mediated Sf-9 cell expression
M G Sorci-Thomas, J S Parks, M W Kearns, et al.
Biochemistry
|
May 1, 2001
Is the oxidation of high-density lipoprotein lipids different than the oxidation of low-density lipoprotein lipids?
M J Thomas, Q Chen, M Zabalawi, et al.
Page
of 1
Search research articles
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Showing results (1-10 of 10) with videos related to
Sort By:
Page
of 1
The Journal of Biological Chemistry
|
April 15, 2000
Single repeat deletion in ApoA-I blocks cholesterol esterification and results in rapid catabolism of delta6 and wild-type ApoA-I in transgenic mice
M G Sorci-Thomas, M Thomas, L Curtiss, et al.
Free Radical Biology & Medicine
|
June 8, 2001
Isoprostane levels in lipids extracted from atherosclerotic arteries of nonhuman primates
M J Thomas, Q Chen, M G Sorci-Thomas, et al.
Arteriosclerosis and Thrombosis : a Journal of Vascular Biology
|
November 1, 1993
Oral contraceptives decrease hepatic cholesterol independent of the LDL receptor in nonhuman primates
P L Colvin, J D Wagner, M D Heuser, et al.
Metabolism: Clinical and Experimental
|
April 29, 1998
Sex steroids increase cholesterol 7alpha-hydroxylase mRNA in nonhuman primates
P L Colvin, J D Wagner, M R Adams, et al.
The Journal of Biological Chemistry
|
August 25, 2000
Structural determination of lipid-bound ApoA-I using fluorescence resonance energy transfer
H Li, D S Lyles, M J Thomas, et al.
The Journal of Biological Chemistry
|
March 14, 1997
Alteration in apolipoprotein A-I 22-mer repeat order results in a decrease in lecithin:cholesterol acyltransferase reactivity
M G Sorci-Thomas, L Curtiss, J S Parks, et al.
Journal of Lipid Research
|
December 6, 2001
Preparation and incorporation of probe-labeled apoA-I for fluorescence resonance energy transfer studies of rHDL
H H Li, M J Thomas, W Pan, et al.
The Journal of Biological Chemistry
|
June 13, 1998
The hydrophobic face orientation of apolipoprotein A-I amphipathic helix domain 143-164 regulates lecithin:cholesterol acyltransferase activation
M G Sorci-Thomas, L Curtiss, J S Parks, et al.
Journal of Lipid Research
|
March 1, 1996
High level secretion of wild-type and mutant forms of human proapoA-I using baculovirus-mediated Sf-9 cell expression
M G Sorci-Thomas, J S Parks, M W Kearns, et al.
Biochemistry
|
May 1, 2001
Is the oxidation of high-density lipoprotein lipids different than the oxidation of low-density lipoprotein lipids?
M J Thomas, Q Chen, M Zabalawi, et al.
Page
of 1