2022
DOI: 10.26434/chemrxiv-2022-f6mjt
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Deciphering the antioxidative role of p53 against H2O2-induced DNA damage using ion mobility mass spectrometry

Abstract: The transcription factor p53 is exquisitely sensitive and selective to a broad variety of cellular environments. Several studies have reported that oxidative stress weakens the p53-DNA binding affinity for certain promoters depending on the oxidation mechanism. Despite this body of work, the precise mechanisms by which the physiologically relevant DNA-p53 tetramer complex senses cellular stresses caused by H2O2 are still unknown. Here, we employed native mass spectrometry (MS) and ion mobility (IM)-MS coupled … Show more

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