Mende U, Kagen A, Meister M, Neer E J
Cardiovascular Division, Brigham and Women's Hospital and Harvard Medical School, Boston, MA 02115, USA.
Circ Res. 1999 Nov 26;85(11):1085-91. doi: 10.1161/01.res.85.11.1085.
We recently showed that the transient expression of a hemagglutinin (HA) epitope-tagged, constitutively active mutant of the G protein alpha(q) subunit (HAalpha(q)) in the hearts of transgenic mice is sufficient to induce cardiac hypertrophy and dilatation that continue to progress after HAalpha(q) protein becomes undetectable. We demonstrated that the activity of phospholipase Cbeta, the immediate downstream target of activated Galpha(q), is increased at 2 weeks, when HAalpha(q)* is expressed, but also at 10 weeks, when HAalpha(q)* is no longer detectable. This observation suggested that the transient HAalpha(q)* expression causes multiple, persistent changes in cellular signaling pathways. We now demonstrate changes in the level, activity, or both of several signaling components, including changes in the amount and hormone responsiveness of phospholipase Cbeta enzymes, in the basal level of diacylglycerol (which predominantly reflects activation of phospholipase D), in the amount or distribution of protein kinase C (PKC) isoforms (PKCalpha, PKCdelta, and PKCepsilon), and in the amount of several endogenous G proteins. These changes vary depending on the isoform of the signaling molecule, the chamber in which it is expressed, and the presence or absence of HAalpha(q)*. Our results suggest that a network of linked signaling functions determines the development of hypertrophy. They also suggest that atria and ventricles represent different signaling domains. It is likely that such changes occur in other model systems in which the activity of a single signaling component is increased, either due to an activating mutation or due to overexpression of the wild type.
我们最近发现,在转基因小鼠心脏中短暂表达血凝素(HA)表位标记的G蛋白α(q)亚基组成型活性突变体(HAα(q)*)足以诱导心脏肥大和扩张,且在HAα(q)*蛋白无法检测到后仍会持续进展。我们证明,磷脂酶Cβ(活化的Gα(q)的直接下游靶点)的活性在HAα(q)*表达的2周时增加,在HAα(q)*不再可检测到的10周时也增加。这一观察结果表明,短暂的HAα(q)*表达会导致细胞信号通路发生多种持续性变化。我们现在证明了几种信号成分的水平、活性或两者均发生了变化,包括磷脂酶Cβ酶的数量和激素反应性的变化、二酰基甘油的基础水平(主要反映磷脂酶D的激活)的变化、蛋白激酶C(PKC)亚型(PKCα、PKCδ和PKCε)的数量或分布的变化,以及几种内源性G蛋白的数量变化。这些变化因信号分子的亚型、其表达的腔室以及HAα(q)*的存在与否而有所不同。我们的结果表明,相互关联的信号功能网络决定了肥大的发展。它们还表明,心房和心室代表不同的信号域。在其他模型系统中,很可能也会发生这样的变化,在这些系统中,由于激活突变或野生型的过表达,单个信号成分的活性会增加。