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40 results on '"Benjamin P. Kellman"'

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1. Preparing glycomics data for robust statistical analysis with GlyCompareCT

2. Elucidating Human Milk Oligosaccharide biosynthetic genes through network-based multi-omics integration

3. ImmCellFie: A user-friendly web-based platform to infer metabolic function from omics data

4. Correcting for sparsity and interdependence in glycomics by accounting for glycan biosynthesis

5. Systems glycobiology for discovering drug targets, biomarkers, and rational designs for glyco-immunotherapy

6. Multiple freeze-thaw cycles lead to a loss of consistency in poly(A)-enriched RNA sequencing

7. A Markov model of glycosylation elucidates isozyme specificity and glycosyltransferase interactions for glycoengineering

8. A consensus-based and readable extension of Linear Code for Reaction Rules (LiCoRR)

9. Model-based assessment of mammalian cell metabolic functionalities using omics data

10. Evolution of the exclusively human pathogen Neisseria gonorrhoeae: Human‐specific engagement of immunoregulatory Siglecs

11. Optimization of carbon and energy utilization through differential translational efficiency

12. Multiplex genome editing of mammalian cells for producing recombinant heparin

13. Inferring a cell’s capabilities from omics data with ImmCellFie

14. A consensus-based and readable extension of Linear Code for Reaction Rules (LiCoRR)

15. Simple and practical sialoglycan encoding system reveals vast diversity in nature and identifies a universal sialoglycan-recognizing probe derived from AB5 toxin B subunits

16. A perturbed gene network containing PI3K/AKT, RAS/ERK, WNT/β-catenin pathways in leukocytes is linked to ASD genetics and symptom severity

17. Correcting for sparsity and interdependence in glycomics by accounting for glycan biosynthesis

18. Model-based assessment of mammalian cell metabolic functionalities using omics data

19. Simple and practical sialoglycan encoding system reveals vast diversity in nature and identifies a universal sialoglycan-recognizing probe derived from AB5 toxin B subunits

20. SARS-CoV-2 Infection Depends on Cellular Heparan Sulfate and ACE2

21. Bacterial modification of the host glycosaminoglycan heparan sulfate modulates SARS-CoV-2 infectivity

22. SARS-CoV-2 Infection Depends on Cellular Heparan Sulfate and ACE2

23. A consensus-based and readable extension ofLinearCode forReactionRules (LiCoRR)

24. Evolution of the exclusively human pathogen Neisseria gonorrhoeae: Human‐specific engagement of immunoregulatory Siglecs

25. What does your cell really do? Model-based assessment of mammalian cells metabolic functionalities using omics data

26. ZNF263 is a transcriptional regulator of heparin and heparan sulfate biosynthesis

28. A systematic evaluation of methods for tailoring genome-scale metabolic models

29. Big-Data Glycomics: Tools to Connect Glycan Biosynthesis to Extracellular Communication

30. NCBI’s Virus Discovery Hackathon: Engaging Research Communities to Identify Cloud Infrastructure Requirements

31. Correcting for sparsity and non-independence in glycomic data through a systems biology framework

32. Virus-Receptor Interactions of Glycosylated SARS-CoV-2 Spike and Human ACE2 Receptor

33. Combating viral contaminants in CHO cells by engineering innate immunity

34. Protein structure, a new constraint for glycosyltransferase specificity: Template‐like association between the glycoprotein surface on glycan structure

37. Systems Glycoengineering: Integrated Analyses of Glycomics, Transcriptomics and Phenotypic Data Reveal Complex Cellular Response to Glycoengineering in CHO Cells

38. Optimization of carbon and energy utilization through differential translational efficiency

39. Combating viral contaminants in CHO cells by engineering STAT1 mediated innate immunity

40. Human milk oligosaccharide composition predicts risk of necrotising enterocolitis in preterm infants

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