Dey Nupur B, Foley Kevin F, Lincoln Thomas M, Dostmann Wolfgang R
Department of Physiology, University of South Alabama, College of Medicine, Mobile, Alabama 36688, USA.
J Cardiovasc Pharmacol. 2005 May;45(5):404-13. doi: 10.1097/01.fjc.0000157455.38068.12.
We have previously shown that type I cGMP-dependent protein kinase (PKG) can alter the phenotype of cultured vascular smooth muscle cells (VSMCs). Although the expression of contractile proteins in VSMCs has been shown to be modulated with the induction of PKG, experiments in which PKG inhibition brings about reduced expression of contractile markers have not been performed. To more thoroughly examine the role of PKG in the expression of contractile proteins, recombinant adenovirus containing the PKG coding sequence (AD-PKG) was used to induce gene expression and morphologic changes in adult rat aortic VSMCs. Cells expressing PKG, but not control adenovirus-infected cells, began to express a specific marker protein for the contractile phenotype, smooth muscle myosin heavy chain (SMMHC), within 48 hours of PKG induction. The morphology of the AD-PKG-infected cells began to change from a fibroblastic phenotype to a spindle-shaped phenotype within 72 hours after PKG induction. The specific cell-permeable PKG inhibitory peptide DT-2, but not control peptides, reversed the biochemical and morphologic changes associated with PKG expression. These results suggest that PKG expression and activity in cultured VSMCs is capable of altering the VSMC phenotype. These data also verify the intracellular action of DT-2 and reveal uptake and dynamic properties of this PKG-inhibiting peptide.
我们之前已经表明,I型环鸟苷酸依赖性蛋白激酶(PKG)可以改变培养的血管平滑肌细胞(VSMC)的表型。尽管已证明VSMC中收缩蛋白的表达会随着PKG的诱导而受到调节,但尚未进行PKG抑制导致收缩标记物表达降低的实验。为了更全面地研究PKG在收缩蛋白表达中的作用,使用含有PKG编码序列的重组腺病毒(AD-PKG)来诱导成年大鼠主动脉VSMC中的基因表达和形态变化。在PKG诱导后48小时内,表达PKG的细胞(而非对照腺病毒感染的细胞)开始表达收缩表型的特异性标记蛋白,即平滑肌肌球蛋白重链(SMMHC)。在PKG诱导后72小时内,AD-PKG感染细胞的形态开始从成纤维细胞表型转变为纺锤形表型。特异性的细胞可渗透PKG抑制肽DT-2(而非对照肽)逆转了与PKG表达相关的生化和形态变化。这些结果表明,培养的VSMC中PKG的表达和活性能够改变VSMC表型。这些数据还验证了DT-2的细胞内作用,并揭示了这种PKG抑制肽的摄取和动态特性。