25 results on '"Diep, Jonathan"'
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2. Enterovirus pathogenesis requires the host methyltransferase SETD3
3. SETD3 is an actin histidine methyltransferase that prevents primary dystocia
4. Necroptosis-based CRISPR knockout screen reveals Neuropilin-1 as a critical host factor for early stages of murine cytomegalovirus infection
5. MLKL Requires the Inositol Phosphate Code to Execute Necroptosis
6. An RNA-centric dissection of host complexes controlling flavivirus infection
7. Drebrin restricts rotavirus entry by inhibiting dynamin-mediated endocytosis
8. Multi-omic characterization of antibody-producing CHO cell lines elucidates metabolic reprogramming and nutrient uptake bottlenecks
9. Inhibitor of growth protein 3 epigenetically silences endogenous retroviral elements and prevents innate immune activation
10. Microfluidic chip‐based single‐cell cloning to accelerate biologic production timelines
11. Inside Back Cover: Biotechnology Journal 1/2020
12. Assuring Clonality on the Beacon Digital Cell Line Development Platform
13. Direct Activation of Human MLKL by a Select Repertoire of Inositol Phosphate Metabolites
14. SETD3 is an actin histidine methyltransferase that prevents primary dystocia
15. STAG2 deficiency induces interferon responses via cGAS-STING pathway and restricts virus infection
16. 478. An Essential and Ubiquitous Protein Receptor for AAV; Glycans as Attachment Receptors
17. 293. Discovery of an Essential Receptor for Adeno-Associated Virus Infection
18. Identification of Plasmodium falciparum specific translation inhibitors from the MMV Malaria Box using a high throughput in vitro translation screen
19. STAG2 deficiency induces interferon responses viacGAS-STING pathway and restricts virus infection.
20. Drebrin restricts rotavirus entry by inhibiting dynamin-mediated endocytosis.
21. Single‐Round, Multiplexed Antibody Mimetic Design through mRNA Display
22. Assuring Clonality on the Beacon Digital Cell Line Development Platform.
23. MOESM1 of Identification of Plasmodium falciparum specific translation inhibitors from the MMV Malaria Box using a high throughput in vitro translation screen
24. MOESM2 of Identification of Plasmodium falciparum specific translation inhibitors from the MMV Malaria Box using a high throughput in vitro translation screen
25. MOESM2 of Identification of Plasmodium falciparum specific translation inhibitors from the MMV Malaria Box using a high throughput in vitro translation screen
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