Dipartimento di Genetica, Biologia e Biochimica, Molecular Biotechnology Center, Università di Torino, via Nizza 52, Turin, Italy.
Cardiovasc Res. 2011 Aug 1;91(3):456-64. doi: 10.1093/cvr/cvr103. Epub 2011 Apr 14.
The Raf-MEK1/2-ERK1/2 (ERK1/2-extracellular signal-regulated kinases 1/2) signalling cascade is crucial in triggering cardiac responses to different stress stimuli. Scaffold proteins are key elements in coordinating signalling molecules for their appropriate spatiotemporal activation. Here, we investigated the role of IQ motif-containing GTPase-activating protein 1 (IQGAP1), a scaffold for the ERK1/2 cascade, in heart function and remodelling in response to pressure overload.
IQGAP1-null mice have unaltered basal heart function. When subjected to pressure overload, IQGAP1-null mice initially develop a compensatory hypertrophy indistinguishable from that of wild-type (WT) mice. However, upon a prolonged stimulus, the hypertrophic response develops towards a thinning of left ventricular walls, chamber dilation, and a decrease in contractility, in an accelerated fashion compared with WT mice. This unfavourable cardiac remodelling is characterized by blunted reactivation of the foetal gene programme, impaired cardiomyocyte hypertrophy, and increased cardiomyocyte apoptosis. Analysis of signalling pathways revealed two temporally distinct waves of both ERK1/2 and AKT phosphorylation peaking, respectively, at 10 min and 4 days after aortic banding in WT hearts. IQGAP1-null mice show strongly impaired phosphorylation of MEK1/2-ERK1/2 and AKT following 4 days of pressure overload, but normal activation of these kinases after 10 min. Pull-down experiments indicated that IQGAP1 is able to bind the three components of the ERK cascade, namely c-Raf, MEK1/2, and ERK1/2, as well as AKT in the heart.
These data demonstrate, for the first time, a key role for the scaffold protein IQGAP1 in integrating hypertrophy and survival signals in the heart and regulating long-term left ventricle remodelling upon pressure overload.
Raf-MEK1/2-ERK1/2(ERK1/2-细胞外信号调节激酶 1/2)信号级联在触发心脏对不同应激刺激的反应中至关重要。支架蛋白是协调信号分子进行适当时空激活的关键要素。在这里,我们研究了 IQ 基序富含 GTP 酶激活蛋白 1(IQGAP1)在心脏功能和重塑中的作用,该蛋白是 ERK1/2 级联的支架蛋白,可响应压力超负荷。
IQGAP1 缺失小鼠的基础心脏功能没有改变。当受到压力超负荷时,IQGAP1 缺失小鼠最初会发展出与野生型(WT)小鼠相似的代偿性肥大。然而,在长时间的刺激下,与 WT 小鼠相比,肥厚反应向左心室壁变薄、腔室扩张和收缩力下降的方向发展,速度更快。这种不利的心脏重塑的特征是胎儿基因程序的重新激活减弱,心肌细胞肥大受损,以及心肌细胞凋亡增加。信号通路分析显示,WT 心脏在主动脉缩窄后 10 分钟和 4 天分别出现 ERK1/2 和 AKT 磷酸化的两个时间上不同的波峰。IQGAP1 缺失小鼠在压力超负荷 4 天后显示 MEK1/2-ERK1/2 和 AKT 的磷酸化明显受损,但在 10 分钟后这些激酶的激活正常。下拉实验表明,IQGAP1 能够结合 ERK 级联的三个成分,即 c-Raf、MEK1/2 和 ERK1/2,以及心脏中的 AKT。
这些数据首次表明,支架蛋白 IQGAP1 在整合心脏中的肥大和存活信号以及调节压力超负荷后左心室的长期重塑方面发挥着关键作用。