【2h】

KRAS

机译:卡拉斯

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摘要

DNA G-quadruplexes (G4s) form in relevant genomic regions and intervene in several biological processes, including the modulation of oncogenes expression, and are potential anticancer drug targets. The human KRAS proto-oncogene promoter region contains guanine-rich sequences able to fold into G4 structures. Here, by using circular dichroism and differential scanning calorimetry as complementary physicochemical methodologies, we compared the thermodynamic stability of the G4s formed by a shorter and a longer version of the KRAS promoter sequence, namely 5′-AGGGCGGTGTGGGAATAGGGAA-3′ (KRAS 22RT) and 5′-AGGGCGGTGTGGGAAGAGGGAAGAGGGGGAGG-3′ (KRAS 32R). Our results show that the unfolding mechanism of KRAS 32R is more complex than that of KRAS 22RT. The different thermodynamic stability is discussed based on the recently determined NMR structures. The binding properties of TMPyP4 and BRACO-19, two well-known G4-targeting anticancer compounds, to the KRAS G4s were also investigated. The present physicochemical study aims to help in choosing the best G4 target for potential anticancer drugs.
机译:在相关基因组区域中的DNA G-quadruplees(G4s)形式并在几种生物过程中干预,包括调节癌肠的表达,是潜在的抗癌药物靶标。人KRAS原癌基因启动子区含有能够折叠成G4结构的富含致藻胺的序列。这里,通过使用圆形二色性和差示扫描量热法作为互补的物理化学方法,我们将通过较短和更长版本的KRAS启动子序列形成的G4的热力学稳定性进行了比较,即5'-agggcggtgtgggGaatagggaA-3'(KRAS 22RT)和5'-agggcggtgtggggaagggaagaggggggggggg-3'(kras 32r)。我们的结果表明,KRAS 32R的展开机制比KRA 22RT的展开机制更复杂。基于最近确定的NMR结构讨论了不同的热力学稳定性。还研究了TMPYP4和BRACO-19的结合特性,两种众所周知的G4靶向抗癌化合物与KRAS G4S进行。目前的物理化学研究旨在帮助选择潜在抗癌药物的最佳G4目标。

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