Gama-de-Souza Letícia N, Cyreno-Oliveira Elaine, Freitas Vanessa M, Melo Edielle S, Vilas-Boas Vanessa F, Moriscot Anselmo S, Jaeger Ruy G
Department of Cell and Developmental Biology, Institute of Biomedical Sciences, University of São Paulo, São Paulo, Brazil.
Matrix Biol. 2008 Jun;27(5):402-19. doi: 10.1016/j.matbio.2008.02.007. Epub 2008 Feb 29.
We studied the induction of protease activity by the laminin alpha1-derived peptide AG73 in cells from adenoid cystic carcinoma (CAC2) and myoepithelioma (M1), respectively a malignant and a benign salivary gland tumors. Laminin alpha1 chain and MMP9 were immunolocalized in adenoid cystic carcinoma and myoepithelioma in vivo and in vitro. Cells grown inside AG73-enriched laminin-111 exhibited large spaces in the extracellular matrix, suggestive of remodeling. The broad spectrum MMP inhibitor GM6001 decreased spaces induced by AG73 in CAC2 and M1 cells. This result strongly suggests that AG73-mediated matrix remodeling involves matrix metalloproteinases. CAC2 and M1 cells cultured on AG73 showed a dose-dependent increase of MMP9 secretion, as detected by zymography. Furthermore, siRNA silencing of MMP9 decreased remodeling in 3D cultures. We searched for AG73 receptors regulating MMP9 activity in our cell lines. CAC2 and M1 cells grown on AG73 exhibited colocalization of syndecan-1 and beta1 integrin. siRNA knockdown of syndecan-1 expression in these cells resulted in decreased adhesion to AG73 and reduced protease and remodeling activity. We investigated syndecan-1 co-receptors in both cell lines. Silencing beta1 integrin inhibited adhesion to AG73, matrix remodeling and protease activity. Double-knockdown experiments were carried out to further explore syndecan-1 and beta1 integrin cooperation. CAC2 cells transfected with both syndecan-1 and beta1 integrin siRNA oligos showed significant decrease in adhesion to AG73. Simultaneous silencing of receptors also induced a decrease in protease activity. Our results suggest that syndecan-1 and beta1 integrin signaling downstream of AG73 regulate adhesion and MMP production by CAC2 and M1 cells.
我们分别研究了层粘连蛋白α1衍生肽AG73对腺样囊性癌(CAC2)细胞和肌上皮瘤(M1)细胞中蛋白酶活性的诱导作用,这两种细胞分别来自恶性和良性唾液腺肿瘤。层粘连蛋白α1链和基质金属蛋白酶9(MMP9)在体内和体外的腺样囊性癌及肌上皮瘤中均有免疫定位。在富含AG73的层粘连蛋白-111中生长的细胞在细胞外基质中呈现出大的间隙,提示有重塑现象。广谱MMP抑制剂GM6001减少了AG73在CAC2和M1细胞中诱导产生的间隙。这一结果强烈表明AG73介导的基质重塑涉及基质金属蛋白酶。通过酶谱法检测发现,在AG73上培养的CAC2和M1细胞中MMP9分泌呈剂量依赖性增加。此外,MMP9的小干扰RNA(siRNA)沉默降低了三维培养中的重塑作用。我们在我们的细胞系中寻找调节MMP9活性的AG73受体。在AG73上生长的CAC2和M1细胞显示syndecan-1和β1整合素共定位。这些细胞中syndecan-1表达的siRNA敲低导致对AG73的粘附减少以及蛋白酶和重塑活性降低。我们研究了这两种细胞系中的syndecan-1共受体。沉默β1整合素抑制了对AG73的粘附、基质重塑和蛋白酶活性。进行了双敲低实验以进一步探究syndecan-1和β1整合素的协同作用。用syndecan-1和β1整合素的siRNA寡核苷酸转染的CAC2细胞对AG73的粘附显著降低。同时沉默受体也导致蛋白酶活性降低。我们的结果表明,AG73下游的syndecan-1和β1整合素信号传导调节CAC2和M1细胞的粘附和MMP产生。