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NMR 1H13C 15N backbone and 13C side chain resonance assignment of the G12C mutant of human K-Ras bound to GDP

机译:人K-Ras G12C突变体与GDP结合的NMR 1H13C15N主链和13C侧链共振分配

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摘要

K-Ras is a key driver of oncogenesis, accounting for approximately 80% of Ras-driven human cancers. The small GTPase cycles between an inactive, GDP-bound and an active, GTP-bound state, regulated by guanine nucleotide exchange factors and GTPase activating proteins, respectively. Activated K-Ras regulates cell proliferation, differentiation and survival by signaling through several effector pathways, including Raf-MAPK. Oncogenic mutations that impair the GTPase activity of K-Ras result in a hyperactivated state, leading to uncontrolled cellular proliferation and tumorogenesis. A cysteine mutation at glycine 12 is commonly found in K-Ras associated cancers, and has become a recent focus for therapeutic intervention. We report here 1HN, 15N, and 13C resonance assignments for the 19.3 kDa (aa 1–169) human K-Ras protein harboring an oncogenic G12C mutation in the GDP-bound form (K-RASG12C-GDP), using heteronuclear, multidimensional NMR spectroscopy. Backbone 1H–15N correlations have been assigned for all non-proline residues, except for the first methionine residue.
机译:K-Ras是致癌作用的关键驱动因素,约占Ras驱动的人类癌症的80%。小的GTP酶在无活性的,与GDP结合的状态和有活性的,与GTP结合的状态之间循环,分别由鸟嘌呤核苷酸交换因子和GTPase活化蛋白调节。活化的K-Ras通过包括Raf-MAPK在内的几种效应子途径发出信号,从而调节细胞的增殖,分化和存活。破坏K-Ras GTPase活性的致癌突变会导致过度激活状态,从而导致不受控制的细胞增殖和肿瘤发生。甘氨酸12处的半胱氨酸突变通常在K-Ras相关的癌症中发现,并且已成为治疗干预的最新焦点。我们在这里报告19.3 kDa(aa 1–169)人类K-Ras的 1 H N,15 N和 13 C共振分配使用异核多维多维NMR光谱分析了一种具有GDP结合形式的致癌G12C突变(K-RAS G12C-GDP )的蛋白质。除第一个蛋氨酸残基外,所有非脯氨酸残基的主链 1 H– 15 N相关性已指定。

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