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N-terminal cysteine acetylation and oxidation patterns may define protein stability

Nat Commun. 2024-06; 
Karen C Heathcote, Thomas P Keeley, Matti Myllykoski, Malin Lundekvam, Nina McTiernan, Salma Akter, Norma Masson, Peter J Ratcliffe, Thomas Arnesen, Emily Flashman
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摘要

Oxygen homeostasis is maintained in plants and animals by O-sensing enzymes initiating adaptive responses to low O (hypoxia). Recently, the O-sensitive enzyme ADO was shown to initiate degradation of target proteins RGS4/5 and IL32 via the Cysteine/Arginine N-degron pathway. ADO functions by catalysing oxidation of N-terminal cysteine residues, but despite multiple proteins in the human proteome having an N-terminal cysteine, other endogenous ADO substrates have not yet been identified. This could be because alternative modifications of N-terminal cysteine residues, including acetylation, prevent ADO-catalysed oxidation. Here we investigate the relationship between ADO-catalysed oxidation and NatA-catalysed ace... More

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