NCI RAS Initiative, Cancer Research Technology Program, Frederick National Laboratory for Cancer Research, Leidos Biomedical Research, Inc., Frederick, MD, 21701, USA.
Diller Family Comprehensive Cancer Center, University of California San Francisco, San Francisco, CA, 94158, USA.
Sci Rep. 2019 Jul 19;9(1):10512. doi: 10.1038/s41598-019-46846-w.
Although post-translational modification of the C-terminus of RAS has been studied extensively, little is known about N-terminal processing. Mass spectrometric characterization of KRAS expressed in mammalian cells showed cleavage of the initiator methionine (iMet) and N-acetylation of the nascent N-terminus. Interestingly, structural studies on GDP- and GMPPNP-bound KRAS lacking the iMet and N-acetylation resulted in Mg-free structures of KRAS with flexible N-termini. In the Mg-free KRAS-GDP structure, the flexible N-terminus causes conformational changes in the interswitch region resulting in a fully open conformation of switch I. In the Mg-free KRAS-GMPPNP structure, the flexible N-terminus causes conformational changes around residue A59 resulting in the loss of Mg and switch I in the inactive state 1 conformation. Structural studies on N-acetylated KRAS-GDP lacking the iMet revealed the presence of Mg and a conformation of switch regions also observed in the structure of GDP-bound unprocessed KRAS with the iMet. In the absence of the iMet, the N-acetyl group interacts with the central beta-sheet and stabilizes the N-terminus and the switch regions. These results suggest there is crosstalk between the N-terminus and the Mg binding site, and that N-acetylation plays an important role by stabilizing the N-terminus of RAS upon excision of the iMet.
虽然 RAS 的 C 末端的翻译后修饰已经得到了广泛的研究,但对 N 末端的加工知之甚少。在哺乳动物细胞中表达的 KRAS 的质谱分析表明,起始甲硫氨酸(iMet)被切割,新生 N 末端发生 N-乙酰化。有趣的是,对缺乏 iMet 和 N-乙酰化的 GDP 和 GMPPNP 结合的 KRAS 的结构研究导致了具有柔性 N 末端的无镁 KRAS 的结构。在无镁 KRAS-GDP 结构中,柔性 N 末端导致在开关 I 区域发生构象变化,导致开关 I 完全打开构象。在无镁 KRAS-GMPPNP 结构中,柔性 N 末端导致残基 A59 周围的构象变化,导致镁丢失和开关 I 处于无活性状态 1 构象。对缺乏 iMet 的 N-乙酰化 KRAS-GDP 的结构研究表明存在镁和开关区域的构象,该构象也存在于具有 iMet 的 GDP 结合未加工 KRAS 的结构中。在缺乏 iMet 的情况下,N-乙酰基与中央β-折叠相互作用,稳定 N 末端和开关区域。这些结果表明 N 末端和镁结合位点之间存在串扰,并且 N-乙酰化通过在 iMet 切除后稳定 RAS 的 N 末端发挥重要作用。