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19 results on '"Terminal amine isotopic labeling of substrates"'

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1. Proteomic Identification of Potential Target Proteins of Cathepsin W for Its Development as a Drug Target for Influenza

2. Proteomic Identification of Potential Target Proteins of Cathepsin W for Its Development as a Drug Target for Influenza

3. Isolation of acetylated and unmodified protein N-Terminal peptides by strong cation exchange chromatographic separation of TrypN-digested peptides

4. Proteomic Identification of Potential Target Proteins of Cathepsin W for Its Development as a Drug Target for Influenza.

5. Aspartyl Protease 5 Matures Dense Granule Proteins That Reside at the Host-Parasite Interface in Toxoplasma gondii

6. Simple, scalable, and ultrasensitive tip-based identification of protease substrates*

7. Identifying Natural Substrates for Dipeptidyl Peptidases 8 and 9 Using Terminal Amine Isotopic Labeling of Substrates (TAILS) Reveals in Vivo Roles in Cellular Homeostasis and Energy Metabolism*♦

8. Triplex protein quantification based on stable isotope labeling by peptide dimethylation applied to cell and tissue lysates

9. Automated online sequential isotope labeling for protein quantitation applied to proteasome tissue-specific diversity

10. A Statistics-based Platform for Quantitative N-terminome Analysis and Identification of Protease Cleavage Products*

11. Multiplex N-terminome Analysis of MMP-2 and MMP-9 Substrate Degradomes by iTRAQ-TAILS Quantitative Proteomics*

12. Matrix Metalloproteinase 10 Degradomics in Keratinocytes and Epidermal Tissue Identifies Bioactive Substrates With Pleiotropic Functions*

13. Deep Profiling of the Cleavage Specificity and Human Substrates of Snake Venom Metalloprotease HF3 by Proteomic Identification of Cleavage Site Specificity (PICS) Using Proteome Derived Peptide Libraries and Terminal Amine Isotopic Labeling of Substrates (TAILS) N-Terminomics.

14. The substrate degradome of meprin metalloproteases reveals an unexpected proteolytic link between meprin β and ADAM10

15. Multiplex peptide stable isotope dimethyl labeling for quantitative proteomics

16. Global Sequencing of Proteolytic Cleavage Sites in Apoptosis by Specific Labeling of Protein N-termini

17. Stable isotopic labeling in proteomics

18. Trypsin is the Primary Mechanism by which the 18O Isotopic Label is Lost in Quantitative Proteomic Studies

19. TAILS N-terminomic and proteomic datasets of healthy human dental pulp

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