From the Institute for Experimental Medical Research, Oslo University Hospital, University of Oslo, 0450 Oslo.
the Bjørknes College, 0456 Oslo.
J Biol Chem. 2019 May 31;294(22):8717-8731. doi: 10.1074/jbc.RA118.006423. Epub 2019 Apr 9.
Costameres are signaling hubs at the sarcolemma and important contact points between the extracellular matrix and cell interior, sensing and transducing biomechanical signals into a cellular response. The transmembrane proteoglycan syndecan-4 localizes to these attachment points and has been shown to be important in the initial stages of cardiac remodeling, but its mechanistic function in the heart remains insufficiently understood. Here, we sought to map the cardiac interactome of syndecan-4 to better understand its function and downstream signaling mechanisms. By combining two different affinity purification methods with MS analysis, we found that the cardiac syndecan-4 interactome consists of 21 novel and 29 previously described interaction partners. Nine of the novel partners were further validated to bind syndecan-4 in HEK293 cells ( CAVIN1/PTRF, CCT5, CDK9, EIF2S1, EIF4B, MPP7, PARVB, PFKM, and RASIP). We also found that 19 of the 50 interactome partners bind differently to syndecan-4 in the left ventricle lysate from aortic-banded heart failure (ABHF) rats compared with SHAM-operated animals. One of these partners was the well-known mechanotransducer muscle LIM protein (MLP), which showed direct and increased binding to syndecan-4 in ABHF. Nuclear translocation is important in MLP-mediated signaling, and we found less MLP in the nuclear-enriched fractions from syndecan-4 mouse left ventricles but increased nuclear MLP when syndecan-4 was overexpressed in a cardiomyocyte cell line. In the presence of a cell-permeable syndecan-4-MLP disruptor peptide, the nuclear MLP level was reduced. These findings suggest that syndecan-4 mediates nuclear translocation of MLP in the heart.
细胞周质是肌膜上的信号中心,也是细胞外基质和细胞内部之间的重要连接点,能够感知和转导生物力学信号,从而引发细胞反应。跨膜蛋白聚糖连接蛋白-4(syndecan-4)定位于这些附着点,并且在心脏重构的初始阶段起着重要作用,但它在心脏中的机械功能仍知之甚少。在这里,我们试图绘制连接蛋白-4 的心脏相互作用组图谱,以更好地了解其功能和下游信号机制。通过将两种不同的亲和纯化方法与 MS 分析相结合,我们发现心脏连接蛋白-4 的相互作用组由 21 个新的和 29 个先前描述的相互作用伙伴组成。其中 9 个新的相互作用伙伴在 HEK293 细胞中进一步被验证与连接蛋白-4 结合(CAVIN1/PTRF、CCT5、CDK9、EIF2S1、EIF4B、MPP7、PARVB、PFKM 和 RASIP)。我们还发现,与 SHAM 手术动物相比,50 个相互作用伙伴中有 19 个在主动脉结扎心力衰竭(ABHF)大鼠左心室裂解物中与连接蛋白-4 的结合方式不同。其中一个是众所周知的机械转导肌 LIM 蛋白(MLP),它在 ABHF 中与连接蛋白-4 直接结合并增加。核易位在 MLP 介导的信号转导中很重要,我们发现来自连接蛋白-4 敲除小鼠左心室的核富集部分中的 MLP 较少,但在心肌细胞系中过表达连接蛋白-4 时,核 MLP 增加。当存在可渗透细胞膜的连接蛋白-4-MLP 破坏肽时,核 MLP 水平降低。这些发现表明连接蛋白-4 介导了心脏中 MLP 的核易位。