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1. Fluorination Influences the Bioisostery of Myo‐Inositol Pyrophosphate Analogs.

3. Metabolic supervision by PPIP5K, an inositol pyrophosphate kinase/phosphatase, controls proliferation of the HCT116 tumor cell line.

4. Inositol pyrophosphate synthesis by diphosphoinositol pentakisphosphate kinase-1 is regulated by phosphatidylinositol(4,5)bisphosphate.

5. Mutations in Diphosphoinositol-Pentakisphosphate Kinase PPIP5K2 are associated with hearing loss in human and mouse.

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

7. KO of 5-InsP7 kinase activity transforms the HCT116 colon cancer cell line into a hypermetabolic, growth-inhibited phenotype.

8. The significance of the 1-kinase/1-phosphatase activities of the PPIP5K family.

9. Inositol Pyrophosphate Profiling of Two HCT116 Cell Lines Uncovers Variation in InsP8 Levels.

10. A High-Throughput Screening-Compatible Strategy for the Identification of Inositol Pyrophosphate Kinase Inhibitors.

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

12. Identification of a functional nuclear translocation sequence in hPPIP5K2.

13. Inositol pyrophosphates: Why so many phosphates?

14. Structural insight into inositol pyrophosphate turnover

15. Signal transduction during environmental stress: InsP8 operates within highly restricted contexts

16. IP8: A quantitatively minor inositol pyrophosphate signaling molecule that punches above its weight.

17. Structural and biochemical characterization of Siw14: A protein-tyrosine phosphatase fold that metabolizes inositol pyrophosphates.

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

19. Asp1 from Schizosaccharomyces pombe Binds a [2Fe-2S]2+ Cluster Which Inhibits Inositol Pyrophosphate 1-Phosphatase Activity.

20. Synthetic Inositol Phosphate Analogs Reveal that PPIP5K2 Has a Surface-Mounted Substrate Capture Site that Is a Target for Drug Discovery.

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