174 results on '"Qiu, Danye"'
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2. Determination of 5-methyldeoxycytosine and oxidized derivatives by nano-liquid chromatography with zwitterionic monolithic capillary column
3. ITPK1 is an InsP6/ADP phosphotransferase that controls phosphate signaling in Arabidopsis.
4. In-Depth Structure and Function Characterization of Heterogeneous Interchain Cysteine-Conjugated Antibody–Drug Conjugates
5. Spontaneous and Selective Peptide Elongation in Water Driven by Aminoacyl Phosphate Esters and Phase Changes
6. Conservation of heat stress acclimation by the inositol polyphosphate multikinase, IPMK responsible for 4/6-InsP7production in land plants
7. The chemistry of branched condensed phosphates
8. Preparation of Novel Zwitterionic Monolith for Capillary Electrochromatography and Nano LC–MS Applications
9. Author Response: Inositol pyrophosphate dynamics reveals control of the yeast phosphate starvation program through 1,5-IP8 and the SPX domain of Pho81
10. Inositol pyrophosphate dynamics reveals control of the yeast phosphate starvation program through 1,5-IP8 and the SPX domain of Pho81
11. β-lapachone regulates mammalian inositol pyrophosphate levels in an NQO1- and oxygen-dependent manner
12. Analysis of inositol phosphate metabolism by capillary electrophoresis electrospray ionization mass spectrometry
13. Metabolic Consequences of Polyphosphate Synthesis and Imminent Phosphate Limitation
14. Non‐canonical nucleosides: Biomimetic triphosphorylation, incorporation into mRNA and effects on translation and structure
15. Bacterial Pathogen Infection Triggers Magic Spot Nucleotide Signaling in Arabidopsis thaliana Chloroplasts Through Specific RelA/SpoT Homologs
16. The phytase RipBL1 enables the assignment of a specific inositol phosphate isomer as a structural component of human kidney stones
17. Preparation of poly(N‐vinylpyrrolidone‐co‐pentaerythritol triacrylate) monolithic column for hydrophilic interaction chromatography
18. Inositol pyrophosphate dynamics in yeast reveals control of the PHO starvation program through 1,5-IP8and the SPX domain of the CDK inhibitor Pho81
19. Flux regulation through glycolysis and respiration is balanced by inositol pyrophosphates in yeast
20. Capillary electrophoresis mass spectrometry identifies new isomers of inositol pyrophosphates in mammalian tissues
21. The phytase RipBL1 enables the assignment of a specific inositol phosphate isomer as a structural component of human kidney stones
22. Bacterial Pathogen Infection Triggers Magic Spot Nucleotide Signaling in Arabidopsis thaliana Chloroplasts through Specific RelA/SpoT Homologues.
23. Screening of epidermal growth factor receptor inhibitors in natural products by capillary electrophoresis combined with high performance liquid chromatography–tandem mass spectrometry
24. Stable Isotopomers of myo-Inositol Uncover a Complex MINPP1-Dependent Inositol Phosphate Network
25. β-Lapachone Regulates Mammalian Inositol Pyrophosphate Levels in an NQO1- and Oxygen-dependent Manner
26. Metabolic consequences of polyphosphate synthesis and imminent phosphate limitation
27. Preparation of a Sulfoalkylbetaine-Based Zwitterionic Monolith with Enhanced Hydrophilicity for Capillary Electrochromatography Separation Applications
28. INOSITOL (1,3,4) TRIPHOSPHATE 5/6 KINASE1-dependent inositol polyphosphates regulate auxin responses in Arabidopsis
29. Capillary electrophoresis mass spectrometry identifies new isomers of inositol pyrophosphates in mammalian tissues
30. Stable isotopomers of myo-inositol to uncover the complex MINPP1-dependent inositol phosphate network
31. Bacterial Pathogen Infection Triggers Magic Spot Nucleotide Signaling in Arabidopsis thalianaChloroplasts through Specific RelA/SpoT Homologues
32. Arabidopsis PFA-DSP-Type Phosphohydrolases Target Specific Inositol Pyrophosphate Messengers
33. Determination of Sulfate Anions in Heparin by Capillary Electrophoresis with Improved Indirect UV Detection
34. Photoaffinity Capture Compounds to Profile the Magic Spot Nucleotide Interactomes**
35. Innentitelbild: Stable Isotope Phosphate Labelling of Diverse Metabolites is Enabled by a Family of 18O‐Phosphoramidites (Angew. Chem. 5/2022)
36. Inside Cover: Stable Isotope Phosphate Labelling of Diverse Metabolites is Enabled by a Family of 18O‐Phosphoramidites (Angew. Chem. Int. Ed. 5/2022)
37. The inositol pyrophosphate metabolism of Dictyostelium discoideum does not regulate inorganic polyphosphate (polyP) synthesis
38. Photoaffinity capture compounds to profile the Magic Spot Nucleotide interactomes
39. Stable Isotope Phosphate Labelling of Diverse Metabolites is Enabled by a Family of 18O‐Phosphoramidites**
40. The Aryne Phosphate Reaction**
41. ITPK1 is an InsP6/ADP phosphotransferase that controls phosphate signaling in Arabidopsis
42. Structural Basis for Inhibition of ROS‐Producing Respiratory Complex I by NADH‐OH
43. The Aryne Phosphate Reaction
44. Stable isotope phosphate labelling of diverse metabolites is enabled by a family of 18O-phosphoramidites
45. Absolute Quantitation of Inositol Pyrophosphates by Capillary Electrophoresis Electrospray Ionization Mass Spectrometry
46. Thiocoumarin Caged Nucleotides: Synthetic Access and Their Photophysical Properties
47. The Chemistry of Branched Condensed Phosphates
48. Stable Isotope Phosphate Labelling of Diverse Metabolites is Enabled by a Family of 18O‐Phosphoramidites**.
49. The Aryne Phosphate Reaction**.
50. Analysis of Inositol Phosphate Metabolism by Capillary Electrophoresis Electrospray Ionization Mass Spectrometry (CE-ESI-MS)
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