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蛋白激酶Cδ调节整合素αVβ3的表达及K-ras依赖性肺癌细胞的转化生长。

PKCδ regulates integrin αVβ3 expression and transformed growth of K-ras dependent lung cancer cells.

作者信息

Symonds Jennifer M, Ohm Angela M, Tan Aik-Choon, Reyland Mary E

机构信息

Program in Cancer Biology, The Graduate School, Aurora, CO, USA.

Matrix and Morphogenesis Section, NIDCR, NIH, Bethesda, MD, USA.

出版信息

Oncotarget. 2016 Apr 5;7(14):17905-19. doi: 10.18632/oncotarget.7560.

Abstract

We have previously shown that Protein Kinase C delta (PKCδ) functions as a tumor promoter in non-small cell lung cancer (NSCLC), specifically in the context of K-ras addiction. Here we define a novel PKCδ -> integrin αVβ3 ->Extracellular signal-Regulated Kinase (ERK) pathway that regulates the transformed growth of K-ras dependent NSCLC cells. To explore how PKCδ regulates tumorigenesis, we performed mRNA expression analysis in four KRAS mutant NSCLC cell lines that stably express scrambled shRNA or a PKCδ targeted shRNA. Analysis of PKCδ-dependent mRNA expression identified 3183 regulated genes, 210 of which were specifically regulated in K-ras dependent cells. Genes that regulate extracellular matrix and focal adhesion pathways were most highly represented in this later group. In particular, expression of the integrin pair, αVβ3, was specifically reduced in K-ras dependent cells with depletion of PKCδ, and correlated with reduced ERK activation and reduced transformed growth as assayed by clonogenic survival. Re-expression of PKCδ restored ITGAV and ITGB3 mRNA expression, ERK activation and transformed growth, and this could be blocked by pretreatment with a αVβ3 function-blocking antibody, demonstrating a requirement for integrin αVβ3 downstream of PKCδ. Similarly, expression of integrin αV restored ERK activation and transformed growth in PKCδ depleted cells, and this could also be inhibited by pretreatment with PD98059.Our studies demonstrate an essential role for αVβ3 and ERK signalingdownstream of PKCδ in regulating the survival of K-ras dependent NSCLC cells, and identify PKCδ as a novel therapeutic target for the subset of NSCLC patients with K-ras dependent tumors.

摘要

我们之前已经表明,蛋白激酶Cδ(PKCδ)在非小细胞肺癌(NSCLC)中作为肿瘤促进因子发挥作用,特别是在K-ras成瘾的情况下。在这里,我们定义了一条新的PKCδ -> 整合素αVβ3 -> 细胞外信号调节激酶(ERK)途径,该途径调节K-ras依赖性NSCLC细胞的转化生长。为了探究PKCδ如何调节肿瘤发生,我们在四个稳定表达乱序短发夹RNA或靶向PKCδ的短发夹RNA的KRAS突变NSCLC细胞系中进行了mRNA表达分析。对PKCδ依赖性mRNA表达的分析确定了3183个受调节的基因,其中210个在K-ras依赖性细胞中受到特异性调节。调节细胞外基质和粘着斑途径的基因在这后一组中占比最高。特别是,整合素对αVβ3的表达在PKCδ缺失的K-ras依赖性细胞中特异性降低,并且与克隆形成存活率检测的ERK激活降低和转化生长降低相关。PKCδ的重新表达恢复了ITGAV和ITGB3 mRNA表达、ERK激活和转化生长,并且这可以被αVβ3功能阻断抗体预处理所阻断,证明PKCδ下游需要整合素αVβ3。同样,整合素αV的表达恢复了PKCδ缺失细胞中的ERK激活和转化生长,并且这也可以被PD98059预处理所抑制。我们的研究证明了αVβ3和ERK信号在PKCδ下游在调节K-ras依赖性NSCLC细胞存活中的重要作用,并将PKCδ鉴定为患有K-ras依赖性肿瘤的NSCLC患者亚群的新型治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/242d/4951259/77a6e4ea8580/oncotarget-07-17905-g001.jpg

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