Department of Pharmacology and Toxicology, The University of Arizona, Tucson, Arizona, USA.
Cell Signal. 2010 Jun;22(6):968-76. doi: 10.1016/j.cellsig.2010.02.004. Epub 2010 Feb 14.
During embryonic development, cells comprising the outermost layer of the heart or epicardium play a critical role in the formation of the coronary vasculature. Thus, uncovering the molecular mechanisms that govern epicardial cell behavior is imperative to better understand the etiology of cardiovascular diseases. In this study, we investigated the function of hyaluronan (HA), a major component of the extracellular matrix, in the modulation of epicardial signaling. We show that stimulation of epicardial cells with high molecular weight HA (HMW-HA) promotes the association of MEKK1 with the HA receptor CD44 and induces MEKK1 phosphorylation. This leads to the activation of two distinct pathways, one ERK-dependent and another NFkappaB-dependent. Furthermore, HMW-HA stimulates epicardial cells to differentiate and invade, as suggested by increased vimentin expression and enhanced invasion through a collagen matrix. Blockade of CD44, transfection with a kinase-inactive MEKK1 construct or the use of ERK1/2 and NFkappaB inhibitors significantly abrogates the invasive response to HMW-HA. Together, these findings suggest an important role for HA in the regulation of epicardial cell fate via activation of MEKK1 signaling cascades.
在胚胎发育过程中,构成心脏外层或心外膜的细胞在冠状动脉血管形成中起着关键作用。因此,揭示控制心外膜细胞行为的分子机制对于更好地理解心血管疾病的病因至关重要。在这项研究中,我们研究了透明质酸(HA)作为细胞外基质的主要成分之一在调节心外膜信号中的作用。我们发现,用高分子量 HA(HMW-HA)刺激心外膜细胞会促进 MEKK1 与 HA 受体 CD44 的结合,并诱导 MEKK1 磷酸化。这导致两种不同途径的激活,一种依赖于 ERK,另一种依赖于 NFkappaB。此外,HMW-HA 刺激心外膜细胞分化和侵袭,这表现在波形蛋白表达增加和穿过胶原基质的侵袭能力增强。CD44 阻断、转染激酶失活的 MEKK1 构建体或使用 ERK1/2 和 NFkappaB 抑制剂可显著阻断 HMW-HA 对侵袭的反应。总之,这些发现表明 HA 通过激活 MEKK1 信号级联在调节心外膜细胞命运方面起着重要作用。