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Farnesylated and methylated KRAS4b: high yield production of protein suitable for biophysical studies of prenylated protein-lipid interactions

机译:法呢基化和甲基化的KRAS4b:高产量生产的蛋白质适合于异戊酰化的蛋白质-脂质相互作用的生物物理研究

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摘要

Prenylated proteins play key roles in several human diseases including cancer, atherosclerosis and Alzheimer’s disease. KRAS4b, which is frequently mutated in pancreatic, colon and lung cancers, is processed by farnesylation, proteolytic cleavage and carboxymethylation at the C-terminus. Plasma membrane localization of KRAS4b requires this processing as does KRAS4b-dependent RAF kinase activation. Previous attempts to produce modified KRAS have relied on protein engineering approaches or in vitro farnesylation of bacterially expressed KRAS protein. The proteins produced by these methods do not accurately replicate the mature KRAS protein found in mammalian cells and the protein yield is typically low. We describe a protocol that yields 5–10 mg/L highly purified, farnesylated, and methylated KRAS4b from insect cells. Farnesylated and methylated KRAS4b is fully active in hydrolyzing GTP, binds RAF-RBD on lipid Nanodiscs and interacts with the known farnesyl-binding protein PDEδ.
机译:烯丙基化蛋白在多种人类疾病(包括癌症,动脉粥样硬化和阿尔茨海默氏病)中起关键作用。 KRAS4b通常在胰腺癌,结肠癌和肺癌中发生突变,可通过C末端的法呢基化,蛋白水解切割和羧甲基化处理。 KRAS4b的质膜定位与KRAS4b依赖的RAF激酶激活一样需要此过程。先前生产修饰的KRAS的尝试依赖于蛋白质工程方法或细菌表达的KRAS蛋白的体外法尼基化。通过这些方法产生的蛋白质不能准确复制在哺乳动物细胞中发现的成熟的KRAS蛋白质,并且蛋白质的产量通常较低。我们描述了从昆虫细胞中产生5–10μmg / L高度纯化,法呢基化和甲基化的KRAS4b的方案。法呢基化和甲基化的KRAS4b在水解GTP中具有完全活性,它与脂质纳米盘上的RAF-RBD结合,并与已知的法呢基结合蛋白PDEδ相互作用。

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