Literature DB >> 25453220

Inositol pyrophosphates: why so many phosphates?

Stephen B Shears1.   

Abstract

The inositol pyrophosphates (PP-InsPs) are a specialized group of "energetic" signaling molecules found in yeasts, plants and animals. PP-InsPs boast the most crowded three dimensional phosphate arrays found in Nature; multiple phosphates and diphosphates are crammed around the six-carbon, inositol ring. Yet, phosphate esters are also a major energy currency in cells. So the synthesis of PP-InsPs, and the maintenance of their levels in the face of a high rate of ongoing turnover, all requires significant bioenergetic input. What are the particular properties of PP-InsPs that repay this investment of cellular energy? Potential answers to that question are discussed here, against the backdrop of a recent hypothesis that signaling by PP-InsPs is evolutionarily ancient. The latter idea is extended herein, with the proposal that the primordial origins of PP-InsPs is reflected in the apparent lack of isomeric specificity of certain of their actions. Nevertheless, there are other aspects of signaling by these polyphosphates that are more selective for a particular PP-InsP isomer. Consideration of the nature of both specific and non-specific effects of PP-InsPs can help rationalize why such molecules possess so many phosphates. Published by Elsevier Ltd.

Entities:  

Keywords:  Analogs; Cell-signaling; Diphosphoinositol polyphosphates; Inositol pyrophosphates; Kinase; Phosphorylation; Structure

Mesh:

Substances:

Year:  2014        PMID: 25453220      PMCID: PMC4291286          DOI: 10.1016/j.jbior.2014.09.015

Source DB:  PubMed          Journal:  Adv Biol Regul        ISSN: 2212-4926


  103 in total

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Review 6.  Towards pharmacological intervention in inositol pyrophosphate signalling.

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Review 7.  Intimate connections: Inositol pyrophosphates at the interface of metabolic regulation and cell signaling.

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8.  The Significance of the Bifunctional Kinase/Phosphatase Activities of Diphosphoinositol Pentakisphosphate Kinases (PPIP5Ks) for Coupling Inositol Pyrophosphate Cell Signaling to Cellular Phosphate Homeostasis.

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9.  Cellular Cations Control Conformational Switching of Inositol Pyrophosphate Analogues.

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