The effect of S427F mutation on RXRα activity depends on its dimeric partner

Galdadas, Ioannis;Bonis, Vangelis;Vgenopoulou, Paraskevi;Papadourakis, Michail;Kakoulidis, Panos;Stergiou, Georgia;Cournia, Zoe;Klinakis, Apostolos

Description

Simulations for RXRa-RARa can be found at: https://repo.vi-seem.eu/handle/21.15102/VISEEM-169 Below are the datasets of the MD simulations RXRα-RXRα and RXRα-PPARγ for the paper: "The effect of S427F mutation on RXRα activity depends on its dimeric partner", Galdadas et al, 2021, Chemical Science. RXRs are nuclear receptors acting as transcription regulators that control key cellular processes in all tissues. All type II nuclear receptors require RXRs for transcriptional activity by forming heterodimeric complexes. Recent whole-exome sequencing studies have identified the RXRα S427F hotspot mutation in 5% of the bladder cancer patients, which is always located at the interface of RXRα with its obligatory dimerization partners. Here, we show that mutation of S427 deregulates transcriptional activity of RXRα dimers, albeit with diverse allosteric mechanisms of action depending on its dimeric partner. S427F acts by allosteric mechanisms, which range from inducing the collapse of the binding pocket to allosteric stabilization of active co-activator competent RXRα states. Unexpectedly, RXR S427F heterodimerization leads to either loss- or gain-of-function complexes, in both cases likely compromising its tumor suppressor activity. This is the first report of a cancer-associated single amino acid substitution that affects the function of the mutant protein variably depending on its dimerization partner.

Citations (0)

Mentions (0)

Metrics

Dataset Index

0.4

FAIR Score

69%

Citations

0

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Zenodo

License

Creative Commons Attribution 4.0 International

Open Access

Assigned Domain

Subfield

Molecular Biology

Field

Biochemistry, Genetics and Molecular Biology

Domain

Life Sciences

Confidence Score

97%

Source

Open Alex

Normalization Factors

FT

53.85

CTw

1.00

MTw

1.00