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Structural insights into the complex of oncogenic KRas4BG12Vand Rgl2, a RalA/B activator

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posted on 2024-08-05, 11:57 authored by Mishal Tariq, Teppei Ikeya, Naoyuki Togashi, Louise Fairall, Shun Kamei, Sannojah Mayooramurugan, Lauren R Abbott, Anab Hasan, Carlos Bueno-Alejo, Sakura Sukegawa, Beatriz Romartinez-Alonso, Miguel Angel Muro Campillo, Andrew HudsonAndrew Hudson, Yutaka Ito, John SchwabeJohn Schwabe, Cyril DominguezCyril Dominguez, Kayoko TanakaKayoko Tanaka
About a quarter of total human cancers carry mutations in Ras isoforms. Accumulating evidence suggests that small GTPases, RalA, and RalB, and their activators, Ral guanine nucleotide exchange factors (RalGEFs), play an essential role in oncogenic Ras-induced signalling. We studied the interaction between human KRas4B and the Ras association (RA) domain of Rgl2 (Rgl2RA), one of the RA-containing RalGEFs. We show that the G12V oncogenic KRas4B mutation changes the interaction kinetics with Rgl2RA. The crystal structure of the KRas4BG12V: Rgl2RAcomplex shows a 2:2 heterotetramer where the switch I and switch II regions of each KRasG12Vinteract with both Rgl2RAmolecules. This structural arrangement is highly similar to the HRasE31K:RALGDSRAcrystal structure and is distinct from the well-characterised Ras:Raf complex. Interestingly, the G12V mutation was found at the dimer interface of KRas4BG12Vwith its partner. Our study reveals a potentially distinct mode of Ras:effector complex formation by RalGEFs and offers a possible mechanistic explanation for how the oncogenic KRas4BG12Vhyperactivates the RalA/B pathway.

Funding

Institutional Strategic Support Fund

Wellcome Trust

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Midlands Integrative Biosciences Training Partnership 2020

Biotechnology and Biological Sciences Research Council

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Establishment of in situ structural biology by fusion of NMR and computational science and its application to the study of eukaryotic intracellular protein dynamics

Japan Science and Technology Agency

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Elucidation of the structure, dynamics, and function of intracellular proteins by in-cell NMR measurement

Japan Science and Technology Agency

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Japan Society for the Promotion of Science (JSPS)

History

Citation

Complex formation of oncogenic K-Ras.G12V and a RalGEF, Rgl2 Mishal Tariq, Teppei Ikeya, Naoyuki Togashi, Louise Fairall, Shun Kamei, Sannojah Mayooramurugan, Lauren R Abbott, Anab Hasan, Carlos Bueno-Alejo, Sakura Sukegawa, Beatriz Romartinez-Alonso, Miguel Angel Muro Campillo, Andrew J Hudson, Yutaka Ito, John WR Schwabe, Cyril Dominguez, Kayoko Tanaka, Life Science Alliance Oct 2023, 7 (1) e202302080; DOI: 10.26508/lsa.202302080

Author affiliation

College of Life Sciences, Molecular & Cell Biology, College of Science & Engineering, Chemistry

Version

  • VoR (Version of Record)

Published in

Life Science Alliance

Volume

7

Issue

1

Pagination

e202302080 - e202302080

Publisher

Life Science Alliance, LLC

issn

2575-1077

eissn

2575-1077

Acceptance date

2023-10-02

Copyright date

2023

Available date

2024-08-05

Spatial coverage

United States

Language

en

Deposited by

Dr Kayoko Tanaka

Deposit date

2024-08-01

Data Access Statement

Structural statistics and coordinates for the KRAS4BG12V–Rgl2RA crystal structure and the NMR Rgl2RA structure are available at PDB with the IDs 8B69 and 8AU4, respectively.

Rights Retention Statement

  • No

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