The N-Myc MB0-MBI region interacts specifically and dynamically with the N-lobe of Aurora kinase A

J Johanna Hultman V Vivian Morad E Eliane Tanner T Tristan M. G. Kenney (Princess Margaret Cancer Centre, University Health Network) Z Zuzanna Pietras L Lalit Pramod Khare D Dean Derbyshire D Diana Resetca C Cheryl H. Arrowsmith D Daniel Aili S Simon Ekström L Linda Z. Penn (Princess Margaret Cancer Centre, University Health Network) B Björn Wallner (Department of Physics, Chemistry and Biology, Linköping University) A Alexandra Ahlner M Maria Sunnerhagen (Department of Physics, Chemistry and Biology, Linköping University)

Abstract

Abstract The intrinsically disordered MYC proteins are master regulators of cellular growth and function, but when deregulated they become cancer drivers. MYC-protein interactions are key to oncogenesis, and while disrupting such interactions would be of significant therapeutic benefit, the intrinsically disordered properties of MYC have dramatically hampered their characterization. Here, we apply an integrated structural biology approach to describe the structure and dynamics of the N-Myc–Aurora A complex, which is critical in neuroendocrine tumor progression. We reveal a functional interaction where multiple binding sites on N-Myc interact with the Aurora A N-lobe. The interaction is governed by aromatic clusters within the conserved MB0 and MBI motifs in N-Myc that interact with Aurora A in a dynamic binding mode that allosterically promotes kinase activation. We show that N-Myc binding to the Aurora A N-lobe can be inhibited by the small-molecule AurkinA, providing opportunity for therapeutical strategies to disrupt this interaction.

Article Details

Volume / Issue Vol. 17, Issue 1
Published February 24, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

J

Johanna Hultman

V

Vivian Morad

E

Eliane Tanner

T

Tristan M. G. Kenney

Princess Margaret Cancer Centre, University Health Network

Z

Zuzanna Pietras

L

Lalit Pramod Khare

D

Dean Derbyshire

D

Diana Resetca

C

Cheryl H. Arrowsmith

D

Daniel Aili

S

Simon Ekström

L

Linda Z. Penn

Princess Margaret Cancer Centre, University Health Network

B

Björn Wallner

Department of Physics, Chemistry and Biology, Linköping University

A

Alexandra Ahlner

M

Maria Sunnerhagen

Department of Physics, Chemistry and Biology, Linköping University