首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Kinase Requirements In Human Cells: Ii. Genetic Interaction Screens Identify Kinase Requirements Following Hpv16 E7 Expression In Cancer Cells
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Kinase Requirements In Human Cells: Ii. Genetic Interaction Screens Identify Kinase Requirements Following Hpv16 E7 Expression In Cancer Cells

机译:人类细胞中的激酶要求:遗传相互作用筛选确定在癌细胞中Hpv16 E7表达后的激酶需求

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摘要

Human papillomavirus (HPV) oncoproteins subvert cellular signaling pathways, including kinase pathways, during the carcinogenic process. To identify kinases targeted by the HPV16 E7 oncoprotein, shRNA kinase screens were performed in RKO colorectal carcinoma cell lines that differ only in their expression of HPV16 E7. Our screens identified kinases that were essential for the survival of RKO cells, but not essential for RKO cells expressing HPV16 E7. These kinases include CDK6, ERBB3, FYN, AAK1, and TSSK2. We show that, as predicted, CDK6 knockdown inhibits pRb phosphorylation and induces S-phase depletion, thereby inhibiting cell viability. Knockdown of ERBB3, FYN, AAK1, and TSSK2 induces a similar loss of cell viability through an unknown mechanism. Expression of the HPV16 E7 oncoprotein, known to bind and degrade pRb, relieves the requirement of these kinases. These studies demonstate that expression of a single oncoprotein can dramatically alter kinase sensitivity in human cells. The shRNA screens used here perform analogously to genetic interaction screens commonly used in genetically tractable organisms such as yeast, and thus represent an exciting method for unbiased identification of cellular signaling pathways targeted by cancer mutations.
机译:人乳头瘤病毒(HPV)癌蛋白在致癌过程中破坏了细胞信号传导途径,包括激酶途径。为了鉴定HPV16 E7癌蛋白靶向的激酶,在仅HPV16 E7表达不同的RKO大肠癌细胞系中进行了shRNA激酶筛选。我们的筛选确定了对于RKO细胞生存至关重要但对表达HPV16 E7的RKO细胞而言并非必需的激酶。这些激酶包括CDK6,ERBB3,FYN,AAK1和TSSK2。我们表明,正如所预测的,CDK6敲低抑制pRb磷酸化并诱导S期耗竭,从而抑制细胞活力。敲低ERBB3,FYN,AAK1和TSSK2会通过未知机制诱导类似的细胞活力丧失。已知能结合并降解pRb的HPV16 E7癌蛋白的表达减轻了对这些激酶的需求。这些研究证明,单一癌蛋白的表达可以显着改变人细胞中的激酶敏感性。此处使用的shRNA筛选类似于遗传易加工的生物(例如酵母)中常用的遗传相互作用筛选,因此代表了一种令人兴奋的方法,可无偏地识别以癌症突变为目标的细胞信号通路。

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