Title of article :
Smooth muscle cell biglycan overexpression results in increased lipoprotein retention on extracellular matrix: implications for the retention of lipoproteins in atherosclerosis
Author/Authors :
Kevin D. O’Brien، نويسنده , , Katherine Lewis، نويسنده , , Jens W. Fischer، نويسنده , , Pamela Johnson Rowsey، نويسنده , , Jin-Yong Hwang، نويسنده , , Eleanor A. Knopp، نويسنده , , Michael G. Kinsella، نويسنده , , P. Hugh R. Barrett، نويسنده , , Alan Chait، نويسنده , , Thomas N. Wight، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
7
From page :
29
To page :
35
Abstract :
Lipoprotein retention on extracellular matrix (ECM) may play a central role in atherogenesis, and a specific extracellular matrix proteoglycan, biglycan, has been implicated in lipoprotein retention in human atherosclerosis. To test whether increased cellular biglycan expression results in increased retention of lipoproteins on ECM, rat aortic smooth muscle cells (SMCs) were transduced with a human biglycan cDNA-containing retroviral vector (LBSN) or with an empty retroviral vector (LXSN). To assess the importance of biglycanʹs glycosaminoglycan side chains in lipoprotein retention, ECM binding studies were also performed using RASMCs transduced with a retroviral vector encoding for a mutant, glycosaminoglycan-deficient biglycan (LBmutSN). Human biglycan mRNA and protein were confirmed in LBSN and LBmutSN RASMCs by Northern and Western blot analyses. HDL3+E binding to SMC ECM was increased significantly (as determined by 95% confidence intervals for binding curves) for LBSN as compared to either LXSN or LBmutSN cells; the increases for LBSN cell ECM were due primarily to an approximately 50% increase in binding sites (increased Bmax) versus LXSN cell ECM and of approximately 25% versus LBmutSN cell ECM. These results are consistent with the hypothesis that biglycan, through its glycosaminoglycan side chains, may mediate lipoprotein retention on atherosclerotic plaque ECM.
Keywords :
Biglycan , lipoprotein , atherosclerosis , extracellular matrix
Journal title :
Atherosclerosis
Serial Year :
2004
Journal title :
Atherosclerosis
Record number :
631456
Link To Document :
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