Breuleux Madlaina, Schoumacher Fabrice, Rehn Daniel, Küng Willy, Mueller Heinz, Eppenberger Urs
Novartis Pharma AG, Klybeckstrasse 125, WKL-125.12.59, 4002 Basel, Switzerland.
Mol Cancer Res. 2006 Jan;4(1):27-37. doi: 10.1158/1541-7786.MCR-05-0016.
Heregulins (HRG) are known as soluble secreted growth factors that, on binding and activating ErbB3 and ErbB4 cell surface receptors, are involved in cell proliferation, metastasis, survival, and differentiation in normal and malignant tissues. Previous studies have shown that some HRG1 splice variants are translocated to the nucleus. By investigating the subcellular localization of HRGalpha(1-241), nuclear translocation and accumulation in nuclear dot-like structures was shown in breast cancer cells. This subcellular distribution pattern depends on the presence of at least one of two nuclear localization sequences and on two domains on the HRG construct that were found to be necessary for nuclear dot formation. Focusing on the nuclear function of HRG, a mammary gland cDNA library was screened with the mature form of HRGalpha in a yeast two-hybrid system, and coimmunoprecipitation of endogenous HRG was done. The data reveal positive interactions of HRGalpha(1-241) with nuclear factors implicated in different biological functions, including transcriptional control as exemplified by interaction with the transcriptional repressor histone deacetylase 2. In addition, HRGalpha(1-241) showed transcriptional repression activity in a reporter gene assay. Furthermore, a potential of HRG proteins to form homodimers was reported and the HRG sequence responsible for dimerization was identified. These observations strongly support the notion that HRG1 splice variants have multifunctional properties, including previously unknown regulatory functions within the nucleus that are different from the activation of ErbB receptor signaling.
Heregulins(HRG)是一种可溶性分泌生长因子,它与细胞表面受体ErbB3和ErbB4结合并激活后,参与正常组织和恶性组织中的细胞增殖、转移、存活及分化过程。先前的研究表明,一些HRG1剪接变体可转运至细胞核。通过研究HRGα(1 - 241)的亚细胞定位,发现其在乳腺癌细胞中会发生核转运并在核点状结构中积累。这种亚细胞分布模式取决于两个核定位序列中至少一个的存在,以及HRG构建体上发现的对核点形成必不可少的两个结构域。聚焦于HRG的核功能,在酵母双杂交系统中用HRGα的成熟形式筛选乳腺cDNA文库,并进行内源性HRG的共免疫沉淀。数据揭示了HRGα(1 - 241)与涉及不同生物学功能的核因子之间的正向相互作用,包括与转录抑制因子组蛋白去乙酰化酶2相互作用所例证的转录调控。此外,HRGα(1 - 241)在报告基因检测中显示出转录抑制活性。此外,有报道称HRG蛋白具有形成同二聚体的潜力,并鉴定出了负责二聚化的HRG序列。这些观察结果有力地支持了这样一种观点,即HRG1剪接变体具有多功能特性,包括细胞核内以前未知的调控功能,这些功能不同于ErbB受体信号的激活。