Daniel Kwaku Abankwa

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Luxembourg

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Recent Grants

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Development of protein-protein interaction inhibitors to selectively target H-Ras in cancer (NWO co-application)

Open Date: 2020-10-01

Close Date: 2024-09-01

Grant: Close

Identification and characterization of novel Ras plasma membrane signalling complex modulators (BBSCR co-application)

Open Date: 2020-10-01

Close Date: 2023-09-01

Grant: Close

Investigation of nanoscale RAS polarizations in instructing cancer cell stemness

Open Date: 2020-01-03

Close Date:

Grant: Close

Pde6d/ Kras Inhibitor Development For Cancer Treatment-v2 (Inhibit PDE-RAS v2)

Open Date: 2020-01-01

Close Date: 2022-01-01

Grant: Close

Evaluation of the biological activity of novel PDE6D inhibitors

Open Date: 2019-09-01

Close Date: 2023-08-01

Articles (10)

K-Ras Binds Calmodulin-Related Centrin1 with Potential Implications for K-Ras Driven Cancer Cell Stemness

Recent data suggest that K-Ras4B (hereafter K-Ras) can drive cancer cell stemness via calmodulin (CaM)-dependent, non-canonical Wnt-signalling. Here we examined whether another Ca2+-binding protein, the CaM-related centrin1, binds to K-Ras and could mediate some K-Ras functions that were previously ascribed to CaM. While CaM and centrin1 appear to distinguish between peptides that were derived from their classical targets, they both bind to K-Ras in cells. Cellular BRET- and immunoprecipitation data suggest that CaM engages more with K-Ras than centrin1 and that the interaction with the C-terminal membrane anchor of K-Ras is sufficient for this. Surprisingly, binding of neither K-Ras nor its membrane anchor alone to CaM or centrin1 is sensitive to inhibition of prenylation. In support of an involvement of the G-domain of K-Ras in cellular complexes with these Ca2+-binding proteins, we find that oncogenic K-RasG12V displays increased engagement with both CaM and centrin1. This is abrogated by addition of the D38A effector-site mutation, suggesting that K-RasG12V is held together with CaM or centrin1 in complexes with effectors. When treated with CaM inhibitors, the BRET-interaction of K-RasG12V with centrin1 was also disrupted in the low micromolar range, comparable to that with CaM. While CaM predominates in regulating functional membrane anchorage of K-Ras, it has a very similar co-distribution with centrin1 on mitotic organelles. Given these results, a significant overlap of the CaM- and centrin1-dependent functions of K-Ras is suggested.

Year:

2023

Collaborators (4)

Thomas Sauter

-

LUXEMBOURG

Tiina A. Salminen

Åbo Akademi University

FINLAND

Arafath Kaja Najumudeen

University of Helsinki

FINLAND

Philips Mark

Professor

NYU Langone Health

UNITED STATES
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