Waggoner Shelly A, Johannes Gregg J, Liebhaber Stephen A
Department of Genetics, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.
J Biol Chem. 2009 Apr 3;284(14):9039-49. doi: 10.1074/jbc.M806986200. Epub 2009 Feb 11.
The alpha-globin poly(C)-binding proteins (alphaCPs) comprise an abundant and widely expressed set of K-homolog domain RNA-binding proteins. alphaCPs regulate the expression of a number of cellular and viral mRNAs at the levels of splicing, stability, and translation. Previous surveys have identified 160 mRNAs that are bound by alphaCP in the human hematopoietic cell line, K562. To explore the functions of these alphaCP/mRNA interactions, we identified mRNAs whose levels are altered in K562 cells acutely depleted of the two major alphaCP proteins, alphaCP1 and alphaCP2. Microarray analysis identified 27 mRNAs that are down-regulated and 14 mRNAs that are up-regulated in the alphaCP1/2-co-depleted cells. This alphaCP1/2 co-depletion was also noted to inhibit cell proliferation and trigger a G(1) cell cycle arrest. Targeted analysis of genes involved in cell cycle control revealed a marked increase in p21(WAF) mRNA and protein. Analysis of mRNP complexes in K562 cells demonstrates in vivo association of p21(WAF) mRNA with alphaCP1 and alphaCP2. In vitro binding assays indicate that a 127-nucleotide region of the 3'-untranslated region of p21(WAF) interacts with both alphaCP1 and alphaCP2, and co-depletion of alphaCP1/2 results in a marked increase in p21(WAF) mRNA half-life. p21(WAF) induction and G(1) arrest in the alphaCP1/2-co-depleted cells occur in the absence of p53 and are not observed in cells depleted of the individual alphaCP isoforms. The apparent redundancy in the actions of alphaCP1 and alphaCP2 upon p21(WAF) expression correlates with a parallel redundancy in their effects on cell cycle control. These data reveal a pivotal role for alphaCP1 and alphaCP2 in a p53-independent pathway of p21(WAF) control and cell cycle progression.
α-珠蛋白聚(C)结合蛋白(αCPs)是一组丰富且广泛表达的K-同源结构域RNA结合蛋白。αCPs在剪接、稳定性和翻译水平上调节多种细胞和病毒mRNA的表达。先前的研究已经在人造血细胞系K562中鉴定出160种与αCP结合的mRNA。为了探索这些αCP/mRNA相互作用的功能,我们鉴定了在急性缺失两种主要αCP蛋白αCP1和αCP2的K562细胞中水平发生改变的mRNA。微阵列分析鉴定出在αCP1/2共同缺失的细胞中有27种mRNA下调,14种mRNA上调。还注意到这种αCP1/2共同缺失会抑制细胞增殖并引发G(1)期细胞周期停滞。对参与细胞周期调控的基因进行靶向分析发现p21(WAF)mRNA和蛋白显著增加。对K562细胞中mRNP复合物的分析表明p21(WAF)mRNA在体内与αCP1和αCP2相关联。体外结合试验表明p21(WAF)3'-非翻译区的一个127个核苷酸区域与αCP1和αCP2都相互作用,并且αCP1/2的共同缺失导致p21(WAF)mRNA半衰期显著增加。在αCP1/2共同缺失的细胞中p21(WAF)的诱导和G(1)期停滞在没有p53的情况下发生,并且在单独缺失αCP同工型的细胞中未观察到。αCP1和αCP2对p21(WAF)表达作用的明显冗余与其对细胞周期调控影响的平行冗余相关。这些数据揭示了αCP1和αCP2在p21(WAF)调控和细胞周期进程的p53非依赖途径中的关键作用。