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Publication : Protein pyrophosphorylation: moving forward.

First Author  Saiardi A Year  2016
Journal  Biochem J Volume  473
Issue  21 Pages  3765-3768
PubMed ID  27789744 Mgi Jnum  J:248392
Mgi Id  MGI:5925076 Doi  10.1042/BCJ20160710C
Citation  Saiardi A (2016) Protein pyrophosphorylation: moving forward. Biochem J 473(21):3765-3768
abstractText  Genetic ablation of inositol pyrophosphate synthesis has established the fundamental importance of this class of molecules to the eukaryote cell. These studies, however, must be complemented by cell biology and biochemical approaches to appreciate the signalling involved in the processes regulated by inositol pyrophosphates. A recent study by Chanduri et al. published in the Biochemical Journal, by integrating multiple experimental approaches, demonstrated that inositol pyrophosphates regulate intracellular vesicular movement. In particular, the vesicular transport along the microtubule that is driven by the motor protein complex dynein. Importantly, one subunit of this cellular motor, dynein 1 intermediate chain 2, undergoes serine pyrophosphorylation, a post-translational modification driven by inositol pyrophosphates. The pyrophosphorylation status of this dynein intermediate chain regulates its interaction with dynactin, which recruits the motor to vesicles. This mechanistically might explain how inositol pyrophosphates control intracellular membrane trafficking. By dissecting the serine pyrophosphorylation process, this work increases our awareness of this modification, underappreciated by the scientific literature but probably not by the eukaryotic cell.
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