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首页> 外文期刊>Nucleic Acids Research >MAZ-binding G4-decoy with locked nucleic acid and twisted intercalating nucleic acid modifications suppresses KRAS in pancreatic cancer cells and delays tumor growth in mice
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MAZ-binding G4-decoy with locked nucleic acid and twisted intercalating nucleic acid modifications suppresses KRAS in pancreatic cancer cells and delays tumor growth in mice

机译:具有锁定核酸和扭曲插入核酸修饰的MAZ结合G4诱饵可抑制胰腺癌细胞中的KRAS并延缓小鼠的肿瘤生长

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摘要

KRAS mutations are primary genetic lesions leading to pancreatic cancer. The promoter of human KRAS contains a nuclease-hypersensitive element (NHE) that can fold in G4-DNA structures binding to nuclear proteins, including MAZ (myc-associated zinc-finger). Here, we report that MAZ activates KRAS transcription. To knockdown oncogenic KRAS in pancreatic cancer cells, we designed oligonucleotides that mimic one of the G-quadruplexes formed by NHE (G4-decoys). To increase their nuclease resistance, two locked nucleic acid (LNA) modifications were introduced at the 3-end, whereas to enhance the folding and stability, two polycyclic aromatic hydrocarbon units (TINA or AMANY) were inserted internally, to cap the quadruplex. The most active G4-decoy (2998),which had two para-TINAs, strongly suppressed KRAS expression in Panc-1 cells. It also repressed their metabolic activity (IC_(50) = 520nM), and it inhibited cell growth and colony formation by activating apoptosis. We finally injected 2998 and controloligonucleotides 5153, 5154 (2 nmol/mouse) intratumorally in SCID mice bearing a Panc-1 xenograft. After three treatments, 2998 reduced tumor xenograft growth by 64% compared with control and increased the Kaplan-Meier median survival time by 70%. Together, our data show that MAZ-specific G4-decoys mimicking a KRAS quadruplex are promising for pancreatic cancer therapy.
机译:KRAS突变是导致胰腺癌的主要遗传损伤。人KRAS的启动子包含一个核酸酶超敏元件(NHE),该元件可以在与核蛋白结合的G4-DNA结构中折叠,包括MAZ(myc相关的锌指)。在这里,我们报告MAZ激活KRAS转录。为了敲低胰腺癌细胞中的致癌性KRAS,我们设计了可模仿NHE形成的G-四链体之一的寡核苷酸(G4-诱饵)。为了提高它们的核酸酶抗性,在3端引入了两个锁定核酸(LNA)修饰,而为了增强折叠和稳定性,在内部插入了两个多环芳烃单元(TINA或AMANY),以覆盖四链体。具有两个对-TINA的最活跃的G4诱饵(2998)强烈抑制了Panc-1细胞中的KRAS表达。它还抑制了它们的代谢活性(IC_(50)= 520nM),并通过激活细胞凋亡抑制了细胞生长和集落形成。我们最终在携带Panc-1异种移植物的SCID小鼠体内瘤内注射了2998和控制寡核苷酸5153、5154(2 nmol /小鼠)。经过三项治疗,与对照组相比,2998的肿瘤异种移植物生长减少了64%,Kaplan-Meier中位生存时间增加了70%。总之,我们的数据表明,模仿KRAS四重体的MAZ特异性G4诱饵有望用于胰腺癌治疗。

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