Calaluce Robert, Bearss David J, Barrera Jean, Zhao Yu, Han Haiyong, Beck Shaleen K, McDaniel Kathy, Nagle Ray B
Arizona Cancer Center, University of Arizona Health Sciences Center, Tucson, AZ, USA.
Neoplasia. 2004 Sep-Oct;6(5):468-79. doi: 10.1593/neo.03499.
Interactions between extracellular matrix proteins and prostate carcinoma cells change dramatically during prostate tumor progression. We have concentrated on two key modifications that occur in the hemidesmosome in prostate carcinoma: loss of laminin-5 protein expression and altered basal cell polarity of the alpha6beta4 integrin. We previously demonstrated two cell line-specific isoforms (beta3A and beta3B) of the LAMB3 message. Cells expressing only the beta3B isoform did not translate the beta3 protein and were unable to assemble the laminin-5 trimer. One such cell line, LNCaP, was selected to determine whether restoration of the laminin-5 beta3A isoform would cause expression of a functional laminin-5 beta3 chain, assembly and secretion of the laminin-5 trimer, and reversion to a non-neoplastic phenotype. Laminin-5 beta3A cDNA was cloned and stably transfected into LNCaP cells. We observed the restoration of the beta3 protein, but a laminin-5 trimer was not secreted. Moreover, increased cell migration was demonstrated, and tumorigenicity was increased in SCID mice. A microarray analysis, performed between transfected and nontransfected LNCaP cells, showed most changing genes to be associated with signal transduction. The beta3 chain of laminin-5 may thus play an important role in signal transduction, which may enhance cell motility and tumorigenesis.
在前列腺肿瘤进展过程中,细胞外基质蛋白与前列腺癌细胞之间的相互作用发生了巨大变化。我们专注于前列腺癌半桥粒中发生的两个关键改变:层粘连蛋白-5蛋白表达缺失以及α6β4整合素的基底细胞极性改变。我们之前证实了LAMB3信息的两种细胞系特异性异构体(β3A和β3B)。仅表达β3B异构体的细胞无法翻译β3蛋白,也无法组装层粘连蛋白-5三聚体。选择了一种这样的细胞系LNCaP,以确定层粘连蛋白-5β3A异构体的恢复是否会导致功能性层粘连蛋白-5β3链的表达、层粘连蛋白-5三聚体的组装和分泌,以及恢复到非肿瘤表型。将层粘连蛋白-5β3A cDNA克隆并稳定转染到LNCaP细胞中。我们观察到β3蛋白的恢复,但未分泌层粘连蛋白-5三聚体。此外,证实细胞迁移增加,并且在SCID小鼠中致瘤性增加。在转染和未转染的LNCaP细胞之间进行的微阵列分析表明,大多数变化的基因与信号转导相关。因此,层粘连蛋白-5的β3链可能在信号转导中起重要作用,这可能会增强细胞运动性和肿瘤发生。