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Disease-relevant signalling-pathways in head and neck cancer: Taspase1’s proteolytic activity fine-tunes TFIIA function

机译:头颈癌中与疾病相关的信号传导途径:Taspase1的蛋白水解活性可微调TFIIA功能

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摘要

Head and neck cancer (HNC) is the seventh most common malignancy in the world and its prevailing form, the head and neck squamous cell carcinoma (HNSCC), is characterized as aggressive and invasive cancer type. The transcription factor II A (TFIIA), initially described as general regulator of RNA polymerase II-dependent transcription, is part of complex transcriptional networks also controlling mammalian head morphogenesis. Posttranslational cleavage of the TFIIA precursor by the oncologically relevant protease Taspase1 is crucial in this process. In contrast, the relevance of Taspase1-mediated TFIIA cleavage during oncogenesis of HNSCC is not characterized yet. Here, we performed genome-wide expression profiling of HNSCC which revealed significant downregulation of the TFIIA downstream target CDKN2A. To identify potential regulatory mechanisms of TFIIA on cellular level, we characterized nuclear-cytoplasmic transport and Taspase1-mediated cleavage of TFIIA variants. Unexpectedly, we identified an evolutionary conserved nuclear export signal (NES) counteracting nuclear localization and thus, transcriptional activity of TFIIA. Notably, proteolytic processing of TFIIA by Taspase1 was found to mask the NES, thereby promoting nuclear localization and transcriptional activation of TFIIA target genes, such as CDKN2A. Collectively, we here describe a hitherto unknown mechanism how cellular localization and Taspase1 cleavage fine-tunes transcriptional activity of TFIIA in HNSCC.
机译:头颈癌(HNC)是世界上第七大最常见的恶性肿瘤,其流行形式为头颈鳞状细胞癌(HNSCC),具有侵略性和浸润性癌症类型。转录因子II A(TFIIA)最初被描述为RNA聚合酶II依赖性转录的一般调节物,是复杂转录网络的一部分,该网络也控制哺乳动物头部的形态发生。在此过程中,肿瘤相关蛋白酶Taspase1对TFIIA前体的翻译后切割至关重要。相比之下,尚未确定在HNSCC的肿瘤发生过程中Taspase1介导的TFIIA裂解的相关性。在这里,我们进行了HNSCC的全基因组表达谱分析,揭示了TFIIA下游目标CDKN2A的显着下调。为了确定TFIIA在细胞水平上的潜在调控机制,我们表征了TFIIA变体的核质转运和Taspase1介导的裂解。出乎意料的是,我们确定了进化保守的核出口信号(NES)抵消核本地化,从而抵消TFIIA的转录活性。值得注意的是,发现Taspase1对TFIIA进行蛋白水解处理可掩盖NES,从而促进TFIIA目标基因(如CDKN2A)的核定位和转录激活。总的来说,我们在这里描述了迄今为止未知的机制,即细胞定位和Taspase1裂解如何精细调节HNSCC中TFIIA的转录活性。

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