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1. Eukaryotic-like Phosphoprotein Phosphatase (PPP) enzyme evolution: interactions with environmental toxins and regulatory proteins.

2. Peroxisomal protein phosphatase PP2A-B' theta interacts with and piggybacks SINA-like 10 E3 ligase into peroxisomes.

3. Identification of Arabidopsis Protein Kinases That Harbor Functional Type 1 Peroxisomal Targeting Signals.

4. Affinity-based profiling of endogenous phosphoprotein phosphatases by mass spectrometry.

5. The origin and radiation of the phosphoprotein phosphatase (PPP) enzymes of Eukaryotes.

6. Origin of the Phosphoprotein Phosphatase (PPP) sequence family in Bacteria: Critical ancestral sequence changes, radiation patterns and substrate binding features.

7. Use of Mitotic Protein Kinase Inhibitors and Phospho-Specific Antibodies to Monitor Protein Phosphorylation During the Cell Cycle.

8. GL2 EXPRESSION MODULATOR, a plant specific protein phosphatase one interactor that binds phosphoinositides.

9. A Framework to Investigate Peroxisomal Protein Phosphorylation in Arabidopsis.

10. A Quantitative Chemical Proteomic Strategy for Profiling Phosphoprotein Phosphatases from Yeast to Humans.

11. Protein Kinases and Phosphatases of the Plastid and Their Potential Role in Starch Metabolism.

12. Aurora B opposes PP1 function in mitosis by phosphorylating the conserved PP1-binding RVxF motif in PP1 regulatory proteins.

13. Structural basis for the preference of the Arabidopsis thaliana phosphatase RLPH2 for tyrosine-phosphorylated substrates.

14. Lysine acetylome profiling uncovers novel histone deacetylase substrate proteins in Arabidopsis .

15. Recruitment of PP1 to the centrosomal scaffold protein CEP192.

16. Activation of Mitochondrial Protein Phosphatase SLP2 by MIA40 Regulates Seed Germination.

17. Rhizobiales-like Phosphatase 2 from Arabidopsis thaliana Is a Novel Phospho-tyrosine-specific Phospho-protein Phosphatase (PPP) Family Protein Phosphatase.

18. "PP2C7s", Genes Most Highly Elaborated in Photosynthetic Organisms, Reveal the Bacterial Origin and Stepwise Evolution of PPM/PP2C Protein Phosphatases.

19. The mitotic PP2A regulator ENSA/ARPP-19 is remarkably conserved across plants and most eukaryotes.

20. The human mitotic kinesin KIF18A binds protein phosphatase 1 (PP1) through a highly conserved docking motif.

21. Phosphoglucan phosphatase function sheds light on starch degradation.

22. RRP1B is a metastasis modifier that regulates the expression of alternative mRNA isoforms through interactions with SRSF1.

23. Evolution of bacterial-like phosphoprotein phosphatases in photosynthetic eukaryotes features ancestral mitochondrial or archaeal origin and possible lateral gene transfer.

24. Arabidopsis PPP family of serine/threonine protein phosphatases: many targets but few engines.

25. Plant proteomics: current status and future prospects.

26. Molecular mechanisms underlying the interaction of protein phosphatase-1c with ASPP proteins.

27. Insight into the redox regulation of the phosphoglucan phosphatase SEX4 involved in starch degradation.

28. Bacterial-like PPP protein phosphatases: novel sequence alterations in pathogenic eukaryotes and peculiar features of bacterial sequence similarity.

29. Interfacing protein lysine acetylation and protein phosphorylation: ancient modifications meet on ancient proteins.

30. Arabidopsis thaliana histone deacetylase 14 (HDA14) is an α-tubulin deacetylase that associates with PP2A and enriches in the microtubule fraction with the putative histone acetyltransferase ELP3.

31. Phosphonate analogs of 2-oxoglutarate perturb metabolism and gene expression in illuminated Arabidopsis leaves.

32. Taperin (c9orf75), a mutated gene in nonsyndromic deafness, encodes a vertebrate specific, nuclear localized protein phosphatase one alpha (PP1α) docking protein.

33. Isolation of human mitotic protein phosphatase complexes: identification of a complex between protein phosphatase 1 and the RNA helicase Ddx21.

34. Two ancient bacterial-like PPP family phosphatases from Arabidopsis are highly conserved plant proteins that possess unique properties.

35. Okadaic acid and microcystin insensitive PPP-family phosphatases may represent novel biotechnology targets.

36. Identification and characterization of AtI-2, an Arabidopsis homologue of an ancient protein phosphatase 1 (PP1) regulatory subunit.

37. RRP1B targets PP1 to mammalian cell nucleoli and is associated with Pre-60S ribosomal subunits.

38. A phylogenetic survey of myotubularin genes of eukaryotes: distribution, protein structure, evolution, and gene expression.

39. Protein phosphatase 6 interacts with the DNA-dependent protein kinase catalytic subunit and dephosphorylates gamma-H2AX.

40. PII in higher plants: a modern role for an ancient protein.

41. Evolution of protein phosphatases in plants and animals.

42. Arabidopsis At5g39790 encodes a chloroplast-localized, carbohydrate-binding, coiled-coil domain-containing putative scaffold protein.

43. Displacement affinity chromatography of protein phosphatase one (PP1) complexes.

44. Evolutionary radiation pattern of novel protein phosphatases revealed by analysis of protein data from the completely sequenced genomes of humans, green algae, and higher plants.

45. Structural basis for the regulation of N-acetylglutamate kinase by PII in Arabidopsis thaliana.

46. Regulation of multisite phosphorylation and 14-3-3 binding of AS160 in response to IGF-1, EGF, PMA and AICAR.

47. The nuclear PP1 interacting protein ZAP3 (ZAP) is a putative nucleoside kinase that complexes with SAM68, CIA, NF110/45, and HNRNP-G.

48. Emerging roles of nuclear protein phosphatases.

49. Crystal structure of Arabidopsis PII reveals novel structural elements unique to plants.

50. Purification of PP2Ac from bovine heart.

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