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7. Hydrostatic Pressure Sensing by WNK kinases

11. Identification of a Class of WNK Isoform-Specific Inhibitors Through High-Throughput Screening

18. Nuclear speckle integrity and function require TAO2 kinase

22. Osmosensing by WNK Kinases

23. WNK1 Enhances Migration and Invasion in Breast Cancer Models

24. WNKs are potassium-sensitive kinases

25. Substrate and docking interactions in serine/threonine protein kinases

26. Multiple active site conformations revealed by distant site mutation in ornithine decarboxylase

28. A Phosphorylated Intermediate in the Activation of WNK Kinases

29. Altering the reaction specificity of eukaryotic ornithine decarboxylase

30. X-ray structure of ornithine decarboxylase from Trypanosoma brucei: the native structure and the structure in complex with alpha-difluoromethylornithine

32. Activation mechanism of the MAP kinase ERK2 by dual phosphorylation

33. Kinetically controlled folding of the serpin plasminogen activator inhibitor 1

34. Mutation of position 52 in ERK2 creates a nonproductive binding mode for adenosine 5'-triphosphate

36. Atomic structure of the MAP kinase ERK2 at 2.3 angstrom resolution

37. Structural basis of latency in plasminogen activator inhibitor-1

38. Inhibitors of WNK1

40. A pressure sensing protein kinase

42. Intracellular Chloride and Scaffold Protein Mo25 Cooperatively Regulate Transepithelial Ion Transport through WNK Signaling in the Malpighian Tubule

43. X-ray structure of Paramecium bursaria chlorella virus arginine decarboxylase: Insight into the structural basis for substrate specificity

44. How activating mutations affect MEK1 regulation and function

45. Binding of nonphysiological protein and peptide substrates to proteases: differences between urokinase-type plasminogen activator and trypsin and contributions to the evolution of regulated proteolysis

46. Dimerization in MAP-kinase signaling

48. Evolution of Substrate Specificity within a Diverse Family of β/α-Barrel-fold Basic Amino Acid Decarboxylases: X-RAY STRUCTURE DETERMINATION OF ENZYMES WITH SPECIFICITY FOR l-ARGININE AND CARBOXYNORSPERMIDINE*

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