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白细胞介素-1 受体相关激酶 2 是转化生长因子 β 信号级联反应的新型调节剂。

Interleukin-1R-associated kinase 2 is a novel modulator of the transforming growth factor beta signaling cascade.

机构信息

Division of Molecular Carcinogenesis, Center for Biomedical Genetics and Cancer Genomics Center, The Netherlands Cancer Institute, Amsterdam, the Netherlands.

出版信息

Mol Cancer Res. 2010 Apr;8(4):592-603. doi: 10.1158/1541-7786.MCR-09-0386. Epub 2010 Mar 23.

Abstract

The transforming growth factor beta (TGFbeta) pathway orchestrates an extensive transcriptional program that is important for many processes in the cell. For example, TGFbeta regulates cell cycle, migration, and epithelial-to-mesenchymal transition. The TGFbeta pathway has a dual role in cancer: it is involved in early-stage tumor suppression but also contributes to tumor progression by promoting invasion. To identify the novel genes involved in TGFbeta pathway signaling, we have performed a functional genetic loss-of-function screen. We screened a small interfering RNA library targeting 700 kinases and kinase-related genes in a TGFbeta-responsive reporter assay. Several genes were identified that upon knockdown could repress the reporter signal; among these are the two cellular receptors for TGFbeta. In addition to these two known components of the TGFbeta pathway, several genes were identified that were previously not linked to the TGFbeta signaling. Knockdown of one of these genes, the IRAK2 kinase, resulted not only in an impaired TGFbeta target gene response but also in a reduction of the nuclear accumulation and phosphorylation of SMAD2. In addition, suppression of interleukin-1R-associated kinase 2 expression led to a partial override of a TGFbeta-induced cell cycle arrest. Our data show that interleukin-1R-associated kinase 2 is a novel and critical component of TGFbeta signaling.

摘要

转化生长因子β(TGFβ)途径协调广泛的转录程序,这对于细胞中的许多过程都很重要。例如,TGFβ 调节细胞周期、迁移和上皮-间充质转化。TGFβ 途径在癌症中具有双重作用:它参与早期肿瘤抑制,但也通过促进侵袭促进肿瘤进展。为了鉴定参与 TGFβ 途径信号转导的新基因,我们进行了功能遗传缺失功能筛选。我们在 TGFβ 反应性报告基因测定中筛选了针对 700 个激酶和激酶相关基因的小干扰 RNA 文库。敲低了几个可以抑制报告信号的基因;其中包括 TGFβ 的两个细胞受体。除了这些 TGFβ 途径的两个已知成分外,还鉴定出了几个以前与 TGFβ 信号无关的基因。敲低其中一个基因,IRAK2 激酶,不仅导致 TGFβ 靶基因反应受损,而且导致 SMAD2 的核积累和磷酸化减少。此外,抑制白细胞介素 1 受体相关激酶 2 的表达导致 TGFβ 诱导的细胞周期阻滞部分逆转。我们的数据表明,白细胞介素 1 受体相关激酶 2 是 TGFβ 信号转导的一个新的关键组成部分。

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