A role for CCN3 (NOV) in calcium signalling

C. Li, V. Martinez, B. He, A. Lombet, Bernard Perbal
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引用次数: 61

Abstract

Aims: In animals and humans increased expression of CCN3 (NOV) is detected in tissues where calcium is a key regulator, such as the adrenal gland, central nervous system, bone and cartilage, heart muscle, and kidney. Because the multimodular structure of the CCN proteins strongly suggests that these cell growth regulators are metalloproteins, this study investigated the possible role of CCN3 in ion flux and transport during development, control of cell proliferation, differentiation, and pathobiology. Methods: The isolation of CCN3 partners was performed by means of the two hybrid system. Yeasts were cotransfected with an HL60 cDNA library fused to the transactivation domain of the GAL4 transcription factor, and with a plasmid expressing CCN3 fused to the DNA binding domain of GAL4. Screening of the recombinant clones selected on the basis of leucine, histidine, and tryptophan prototrophy was performed with a β-galactosidase assay. After the interaction between CCN3 and its putative partners was checked with a GST (glutathione S-transferase) pull down assay, the positive clones were identified by cloning. To establish whether the CCN3 protein affected calcium ion flux, a dynamic imaging microscopy system was used, which allowed the fluorometric measurement of the intracellular calcium concentration. The proteins used in the assays were GST fused with either CCN3 or CCN2 (CTGF) and GST alone as a control. Results: The two hybrid system identified the S100A4 (mts1) calcium binding protein as a partner of CCN3 and the use of the GST fusion proteins showed that the addition of CCN3 and CCN2 to G59 glioblastoma and SK-N-SH neuroblastoma cells caused a pronounced but transient increase of intracellular calcium, originating from both the entry of extracellular calcium and the mobilisation of intracellular stores. Conclusions: The interaction of CCN3 with S100A4 may account, in part, for the association of CCN3 with carcinogenesis and its pattern of expression in normal conditions. The increased intracellular calcium concentrations induced by CCN3 and CCN2 both involve different processes, among which voltage independent calcium channels might be of considerable importance in regulating the calcium flux associated with cell growth control, motility, and spreading. These observations assign for the first time a biological function to the CCN3 protein and point out a broader role for the CCN proteins in calcium ion signalling.
CCN3 (NOV)在钙信号传导中的作用
目的:在动物和人类中,在钙作为关键调节因子的组织中,如肾上腺、中枢神经系统、骨和软骨、心肌和肾脏中,检测到CCN3 (NOV)的表达增加。由于CCN蛋白的多模块结构强烈表明这些细胞生长调节剂是金属蛋白,本研究探讨了CCN3在发育过程中离子通量和转运、细胞增殖、分化和病理生物学控制中的可能作用。方法:采用双杂交系统分离CCN3伴侣。用融合到GAL4转录因子反激活域的HL60 cDNA文库和融合到GAL4 DNA结合域的表达CCN3的质粒对酵母进行共转染。根据亮氨酸、组氨酸和色氨酸原生性筛选重组克隆,采用β-半乳糖苷酶试验。通过GST(谷胱甘肽s -转移酶)下拉试验验证CCN3与可能的合作伙伴之间的相互作用后,通过克隆鉴定出阳性克隆。为了确定CCN3蛋白是否影响钙离子通量,使用了动态成像显微镜系统,该系统允许对细胞内钙浓度进行荧光测量。实验中使用的蛋白质是GST与CCN3或CCN2 (CTGF)融合,GST单独作为对照。结果:两个杂交系统鉴定出S100A4 (mts1)钙结合蛋白是CCN3的伴侣,GST融合蛋白的使用表明,在G59胶质母细胞瘤和SK-N-SH神经母细胞瘤细胞中添加CCN3和CCN2可引起细胞内钙的显著但短暂的增加,这源于细胞外钙的进入和细胞内储存的动员。结论:CCN3与S100A4的相互作用可能部分解释了CCN3与癌变的关联及其在正常情况下的表达模式。CCN3和CCN2诱导的细胞内钙浓度升高都涉及不同的过程,其中电压无关的钙通道可能在调节钙通量方面具有相当重要的作用,与细胞生长控制、运动和扩散有关。这些观察结果首次确定了CCN3蛋白的生物学功能,并指出了CCN蛋白在钙离子信号传导中的更广泛作用。
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