22 results on '"Robins, Katherine"'
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2. Development of a compartmentalised self-replication protocol for selection of superior blunt-end DNA ligases
3. Components, Implementation, and Outcomes of a Nursing Professional Practice Model: A Systematic Review
4. Gene editing enables rapid engineering of complex antibiotic assembly lines
5. DNA methylases for site-selective inhibition of type IIS restriction enzyme activity
6. Methods for competitive enrichment and evaluation of superior DNA ligases
7. Development of a Joint Professional Practice Model for the Total Nursing Force of the United States Military
8. Findings from the Development of a Joint Professional Practice Model
9. Intracellular complexities of acquiring a new enzymatic function revealed by mass-randomisation of active-site residues
10. Chapter Nine - Methods for competitive enrichment and evaluation of superior DNA ligases
11. Intracellular complexities of acquiring a new enzymatic function revealed by mass-randomisation of active-site residues
12. Author response: Intracellular complexities of acquiring a new enzymatic function revealed by mass-randomisation of active-site residues
13. A giant leap in sequence space reveals the intracellular complexities of evolving a new function
14. A sensitive single-enzyme assay system using the non-ribosomal peptide synthetase BpsA for measurement of L-glutamine in biological samples
15. Discovery, Characterisation and Engineering of Non-Ribosomal Peptide Synthetases and Phosphopantetheinyl Transferase Enzymes : a thesis submitted to the Victoria University of Wellington in fulfilment of the requirements for the degree of Doctor of Philosophy in Biotechnology
16. Discovery, Characterisation and Engineering of Non-Ribosomal Peptide Synthetases and Phosphopantetheinyl Transferase Enzymes
17. Generating Functional Recombinant NRPS Enzymes in the Laboratory Setting via Peptidyl Carrier Protein Engineering
18. Psychological trauma of nurse-midwives following shoulder dystocia complicated by neonatal morbidity or mortality
19. Escherichia coli NemA Is an Efficient Chromate Reductase That Can Be Biologically Immobilized to Provide a Cell Free System for Remediation of Hexavalent Chromium
20. Escherichia coli NemA Is an Efficient Chromate Reductase That Can Be Biologically Immobilized to Provide a Cell Free System for Remediation of Hexavalent Chromium.
21. Development of a Joint Professional Practice Model for the Total Nursing Force of the United States Military: Describing an Evidence-Based Process Across Multiple Entities.
22. Methods for competitive enrichment and evaluation of superior DNA ligases.
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