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The structure of neurofibromin isoform 2 reveals different functional states

Author

Listed:
  • Andreas Naschberger

    (Stockholm University
    Medical University Innsbruck)

  • Rozbeh Baradaran

    (Stockholm University)

  • Bernhard Rupp

    (Medical University Innsbruck
    k.-k. Hofkristallamt)

  • Marta Carroni

    (Stockholm University)

Abstract

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 Å. The cryo-electron microscopy structure reveals domain organization and structural details of the Nf1 exon 23a splicing3 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 membrane4. 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.

Suggested Citation

  • Andreas Naschberger & Rozbeh Baradaran & Bernhard Rupp & Marta Carroni, 2021. "The structure of neurofibromin isoform 2 reveals different functional states," Nature, Nature, vol. 599(7884), pages 315-319, November.
  • Handle: RePEc:nat:nature:v:599:y:2021:i:7884:d:10.1038_s41586-021-04024-x
    DOI: 10.1038/s41586-021-04024-x
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    Cited by:

    1. Hui-Ju Tsai & Ya-Fang Chang & Ya-Ju Hsieh & Jiaan-Der Wang & Chih-Ching Wu & Meng-Ying Ho & Ju-Chien Cheng & Ding-Ping Chen & Hsiang-Rui Liao & Ching-Ping Tseng, 2024. "Human Disabled-2 regulates thromboxane A2 signaling for efficient hemostasis in thrombocytopenia," Nature Communications, Nature, vol. 15(1), pages 1-18, December.

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