A new facet of ADP-ribosylation reactions: SIRTs and PARPs interplay

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Abstract

Nicotinamide Adenine Dinucleotide (NAD+) is known mainly as coenzyme of redox reactions for energy transduction and is consumed as substrate in regulatory reactions removing nicotinamide and producing ADP-ribose. Several families of ADPribose synthesizing enzymes use NAD+ as substrate and control processes like DNA repair, replication and transcription, chromatin structure, the activity of G-proteins and others. Since NAD+-dependent reactions involve degradation of the dinucleotide, a constant supply of the pyridinic substrate is required for its homeostasis. NAD+-dependent signaling reactions include protein deacetylation by sirtuins, intracellular calcium signaling and mono-/poly-ADPribosylation. In the context of all NAD+-dependent reactions leading to ADP-ribose synthesis, this review focuses mainly on both the central role played by sirtuins and poly-ADPribose polymerases as cellular NAD+ consumers and their crosstalk in signaling pathways.

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Mennella, M. R. F. (2015, January 15). A new facet of ADP-ribosylation reactions: SIRTs and PARPs interplay. Frontiers in Bioscience - Landmark. Frontiers in Bioscience. https://doi.org/10.2741/4319

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