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The structure of neurofibromin isoform 2 reveals different functional states

机译:神经纤维蛋白同种型2的结构显示出不同的功能状态

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摘要

The autosomal dominant monogenetic disease neurofibromatosis type 1 (NF1) affects approximately one in 3,000 individuals and is caused by mutations in the NF1 tumour suppressor gene, leading to dysfunction in the protein neurofibromin (Nf1)(1,2). As a GTPase-activating protein, a key function of Nf1 is repression of the Ras oncogene signalling cascade. We determined the human Nf1 dimer structure at an overall resolution of 3.3 angstrom. The cryo-electron microscopy structure reveals domain organization and structural details of the Nf1 exon 23a splicing(3) isoform 2 in a closed, self-inhibited, Zn-stabilized state and an open state. In the closed conformation, HEAT/ARM core domains shield the GTPase-activating protein-related domain (GRD) so that Ras binding is sterically inhibited. In a distinctly different, open conformation of one protomer, a large-scale movement of the GRD occurs, which is necessary to access Ras, whereas Sec14-PH reorients to allow interaction with the cellular membrane(4). Zn incubation of Nf1 leads to reduced Ras-GAP activity with both protomers in the self-inhibited, closed conformation stabilized by a Zn binding site between the N-HEAT/ARM domain and the GRD-Sec14-PH linker. The transition between closed, self-inhibited states of Nf1 and open states provides guidance for targeted studies deciphering the complex molecular mechanism behind the widespread neurofibromatosis syndrome and Nf1 dysfunction in carcinogenesis.
机译:常染色体占优势单一疾病神经纤维瘤病1(NF1)影响3,000个个体中的大约一个,并且是由NF1肿瘤抑制基因突变引起的,导致蛋白质神经纤维蛋白(NF1)(1,2)中的功能障碍。作为GTPase-is-激活蛋白,NF1的关键功能是RAS癌基因信号传导级联的抑制。我们以3.3埃埃斯特朗姆的总分辨率确定人NF1二聚体结构。冷冻电子显微镜结构揭示了NF1外显子23A拼接(3)同种型2的结构域组织和结构细节,其闭合,自抑制,Zn稳定状态和开放状态。在闭合构象中,加热/臂核心域屏蔽GTP酶活性蛋白质相关结构域(GRD),使RAS结合是在该抑制的。在一个引脚的明显不同的开放构象中,发生了GRD的大规模运动,这是访问RA的必要条件,而SEC14-pH重新定位以允许与蜂窝膜(4)的相互作用。 Zn孵育NF1导致通过N-热/臂结构域与GRD-SEC14-pH接头之间的Zn结合位点稳定的自我抑制,闭合构象中的两种重选件减少了Ras-Gap活性。闭合,自我禁止国家的闭合,自我禁止国家之间的过渡为有针对性研究的指导提供了解读普遍神经纤维症综合征和癌症中的NF1功能障碍背后的复杂分子机制。

著录项

  • 来源
    《Nature》 |2021年第7884期|315-319|共5页
  • 作者单位

    Stockholm Univ Dept Biochem & Biophys SciLifeLab Solna Sweden|Med Univ Innsbruck Inst Genet Epidemiol Innsbruck Austria;

    Stockholm Univ Dept Biochem & Biophys SciLifeLab Solna Sweden;

    Med Univ Innsbruck Inst Genet Epidemiol Innsbruck Austria|KK Hofkristallamt San Diego CA 92084 USA;

    Stockholm Univ Dept Biochem & Biophys SciLifeLab Solna Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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