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The human, F-actin-based cytoskeleton as a mutagen sensor

机译:人类基于F-肌动蛋白的细胞骨架作为诱变传感器

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Forty years ago the actin cytoskeleton was determined to be disrupted in fibroblasts from persons with DNA repair-defective, hereditary colon cancer, with no clear connection between the cytoskeleton and DNA repair defects at that time. Recently, the large number of sequenced genomes has indicated that mammalian mutagenesis has a large stochastic component. As a result, large coding regions are large mutagen targets. Cytoskeletal protein-related coding regions (CPCRs), including extra-cellular matrix proteins, are among the largest coding regions in the genome and are indeed very commonly mutated in cancer. To determine whether mutagen sensitivity of the actin cytoskeleton could be assessed experimentally, we treated tissue culture cells with 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone and quantified overall cytoskeleton integrity with rhodamine-phalloidin stains for F-actin. The above approach indicated cytoskeletal degradation with increasing mutagen exposure, consistent with increased mutagenesis of CPCRs in TCGA, smoker samples, where overall mutation rates correlate with CPCR mutation rates (R2?=?0.8694; p?
机译:40年前,已确定肌动蛋白的细胞骨架在患有DNA修复缺陷的遗传性结肠癌患者的成纤维细胞中被破坏,当时细胞骨架与DNA修复缺陷之间尚无明确的联系。最近,大量的测序基因组表明哺乳动物诱变具有很大的随机成分。结果,大的编码区是大的诱变目标。细胞骨架蛋白相关编码区(CPCR),包括细胞外基质蛋白,是基因组中最大的编码区之一,确实在癌症中非常普遍地发生突变。为了确定是否可以通过实验评估肌动蛋白细胞骨架的诱变敏感性,我们用4-(甲基亚硝胺基)-1-(3-吡啶基)-1-丁酮处理了组织培养细胞,并用若丹明-鬼笔环肽染色定量了F-的整体细胞骨架完整性。肌动蛋白。上述方法表明,随着诱变剂暴露量的增加,细胞骨架降解,这与吸烟样本TCGA中CPCRs的诱变作用一致,其中总体突变率与CPCR突变率相关(R2≤0.8694;p≤0.00001)。此外,诱变剂暴露与细胞周长/面积比的降低相关,引发了有关潜在的减少,细胞内扩散和化疗药物浓度,诱变增加和细胞骨架完整性降低的问题。确定细胞骨架的完整性可能会提供机会来评估非克隆细胞群体(例如完整组织)中的突变负担,而对于异源突变负担而言,DNA测序可能会面临挑战。

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