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硫酸乙酰肝素蛋白聚糖诱导的平滑肌细胞增殖抑制是通过肿瘤抑制因子PTEN活性增加介导的。

Perlecan-induced suppression of smooth muscle cell proliferation is mediated through increased activity of the tumor suppressor PTEN.

作者信息

Garl Pamela J, Wenzlau Janet M, Walker Heather A, Whitelock John M, Costell Mercedes, Weiser-Evans Mary C M

机构信息

Department of Pediatrics, University of Colorado Health Sciences Center, Denver, Colo 80262, USA.

出版信息

Circ Res. 2004 Feb 6;94(2):175-83. doi: 10.1161/01.RES.0000109791.69181.B6. Epub 2003 Dec 1.

Abstract

We were interested in the elucidation of the interaction between the heparan sulfate proteoglycan, perlecan, and PTEN in the regulation of vascular smooth muscle cell (SMC) growth. We verified serum-stimulated DNA synthesis, and Akt and FAK phosphorylation were significantly reduced in SMCs overexpressing wild-type PTEN. Our previous studies showed perlecan is a potent inhibitor of serum-stimulated SMC growth. We report in the present study, compared with SMCs plated on fibronectin, serum-stimulated SMCs plated on perlecan exhibited increased PTEN activity, decreased FAK and Akt activities, and high levels of p27, consistent with SMC growth arrest. Adenoviral-mediated overexpression of constitutively active Akt reversed perlecan-induced SMC growth arrest while morpholino antisense-mediated loss of endogenous PTEN resulted in increased growth and phosphorylation of FAK and Akt of SMCs on perlecan. Immunohistochemical and Western analyses of balloon-injured rat carotid artery tissues showed a transient increase in phosphoPTEN (inactive) after injury, correlating to high rates of neointimal cell replication; phosphoPTEN was largely limited to actively replicating SMCs. Similarly, in the developing rat aorta, we found increased PTEN activity associated with increased perlecan deposition and decreased SMC replication rates. However, significantly decreased PTEN activity was detected in aortas of perlecan-deficient mouse embryos, consistent with SMC hyperplasia observed in these animals, compared with E17.5 heterozygous controls that produce abundant amounts of perlecan at this developmental time point. Our data show PTEN is a potent endogenously produced inhibitor of SMC growth and increased PTEN activity mediates perlecan-induced suppression of SMC proliferation.

摘要

我们感兴趣的是阐明硫酸乙酰肝素蛋白聚糖(基底膜聚糖)与PTEN在调节血管平滑肌细胞(SMC)生长中的相互作用。我们验证了血清刺激的DNA合成,并且在过表达野生型PTEN的SMC中,Akt和FAK磷酸化显著降低。我们之前的研究表明基底膜聚糖是血清刺激的SMC生长的有效抑制剂。我们在本研究中报告,与接种在纤连蛋白上的SMC相比,接种在基底膜聚糖上的血清刺激的SMC表现出PTEN活性增加、FAK和Akt活性降低以及高水平的p27,这与SMC生长停滞一致。腺病毒介导的组成型活性Akt过表达逆转了基底膜聚糖诱导的SMC生长停滞,而吗啉代反义介导的内源性PTEN缺失导致接种在基底膜聚糖上的SMC的生长以及FAK和Akt磷酸化增加。对球囊损伤的大鼠颈动脉组织进行免疫组织化学和蛋白质印迹分析显示,损伤后磷酸化PTEN(无活性)短暂增加,这与新生内膜细胞的高复制率相关;磷酸化PTEN主要局限于活跃复制的SMC。同样,在发育中的大鼠主动脉中,我们发现PTEN活性增加与基底膜聚糖沉积增加以及SMC复制率降低有关。然而,在基底膜聚糖缺陷的小鼠胚胎的主动脉中检测到PTEN活性显著降低,与在这些动物中观察到的SMC增生一致,相比之下,在这个发育时间点产生大量基底膜聚糖的E17.5杂合对照。我们的数据表明PTEN是一种内源性产生的强效SMC生长抑制剂,并且PTEN活性增加介导了基底膜聚糖诱导的SMC增殖抑制。

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