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首页> 外文期刊>Data in Brief >Altering adsorbed proteins or cellular gene expression in bone-metastatic cancer cells affects PTHrP and Gli2 without altering cell growth
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Altering adsorbed proteins or cellular gene expression in bone-metastatic cancer cells affects PTHrP and Gli2 without altering cell growth

机译:骨转移癌细胞中吸附蛋白或细胞基因表达的改变会影响 PTHrP Gli2 而不会改变细胞生长

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摘要

The contents of this data in brief are related to the article titled “Matrix Rigidity Regulates the Transition of Tumor Cells to a Bone-Destructive Phenotype through Integrin β3 and TGF-β Receptor Type II”. In this DIB we will present our supplemental data investigating Integrin expression, attachment of cells to various adhesion molecules, and changes in gene expression in multiple cancer cell lines. Since the interactions of Integrins with adsorbed matrix proteins are thought to affect the ability of cancer cells to interact with their underlying substrates, we examined the expression of Integrin β1, β3, and β5 in response to matrix rigidity. We found that only Iβ3 increased with increasing substrate modulus. While it was shown that fibronectin greatly affects the expression of tumor-produced factors associated with bone destruction (parathyroid hormone-related protein, PTHrP , and Gli2 ), poly-l-lysine, vitronectin and type I collagen were also analyzed as potential matrix proteins. Each of the proteins was independently adsorbed on both rigid and compliant polyurethane films which were subsequently used to culture cancer cells. Poly-l-lysine, vitronectin and type I collagen all had negligible effects on PTHrP or Gli2 expression, but fibronectin was shown to have a dose dependent effect. Finally, altering the expression of Iβ3 demonstrated that it is required for tumor cells to respond to the rigidity of the matrix, but does not affect other cell growth or viability. Together these data support the data presented in our manuscript to show that the rigidity of bone drives Integrinβ3/TGF-β crosstalk, leading to increased expression of Gli2 and PTHrP .
机译:这些数据的内容与题为“基质刚度通过整合素β3和TGF-β受体II调节肿瘤细胞向破坏性表型的转变”的文章有关。在此DIB中,我们将提供补充数据,研究整联蛋白的表达,细胞与各种粘附分子的附着以及多种癌细胞系中基因表达的变化。由于整合素与吸附的基质蛋白的相互作用被认为会影响癌细胞与其下层底物相互作用的能力,因此我们根据基质的刚性检查了整合素β1,β3和β5的表达。我们发现只有Iβ3随着底物模量的增加而增加。虽然已经表明纤连蛋白极大地影响与骨破坏相关的肿瘤产生因子(甲状旁腺激素相关蛋白,PTHrP和Gli2)的表达,但聚-赖氨酸,玻连蛋白和I型胶原也被分析为潜在的基质蛋白。每种蛋白质均独立吸附在刚性和顺应性聚氨酯膜上,随后用于培养癌细胞。聚-1-赖氨酸,玻连蛋白和I型胶原蛋白对PTHrP或Gli2表达的影响都可以忽略不计,但纤连蛋白却显示出剂量依赖性。最后,改变Iβ3的表达证明,肿瘤细胞必须对基质的刚度作出反应,但不影响其他细胞的生长或生存能力。这些数据共同支持了我们手稿中显示的数据,这些数据表明骨骼的刚性驱动整合素β3/TGF-β串扰,从而导致Gli2和PTHrP的表达增加。

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