20 results on '"Bufton, Joshua C"'
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2. Engineering the ADDobody protein scaffold for generation of high-avidity ADDomer super-binders
3. Target highlights in CASP13: Experimental target structures through the eyes of their authors
4. Receptor-interacting protein kinase 2 (RIPK2) and nucleotide-binding oligomerization domain (NOD) cell signaling inhibitors based on a 3,5-diphenyl-2-aminopyridine scaffold
5. BTB domain mutations perturbing KCTD15 oligomerisation cause a distinctive frontonasal dysplasia syndrome
6. A BTB extension and ion-binding domain contribute to the pentameric structure and TFAP2A binding of KCTD1
7. In vitro generated antibodies guide thermostable ADDomer nanoparticle design for nasal vaccination and passive immunization against SARS-CoV-2.
8. Small molecule inhibitors reveal an indispensable scaffolding role of RIPK2 in NOD2 signaling
9. Structures of nonsense-mediated mRNA decay factors UPF3B and UPF3A in complex with UPF2 reveal molecular basis for competitive binding and for neurodevelopmental disorder-causing mutation
10. Molecular basis of neurodevelopmental disorder-causing mutation in nonsense-mediated mRNA decay factor UPF3B
11. Development of a Selective Dual Discoidin Domain Receptor (DDR)/p38 Kinase Chemical Probe
12. Blasticidin S inhibits mammalian translation and enhances production of protein encoded by nonsense mRNA
13. Activation loop targeting strategy for design of receptor-interacting protein kinase 2 (RIPK2) inhibitors
14. Synthetic self-assembling ADDomer platform for highly efficient vaccination by genetically encoded multiepitope display
15. Small molecule inhibitors reveal an indispensable scaffolding role of RIPK 2 in NOD 2 signaling
16. The DUF1669 domain of FAM83 family proteins anchor casein kinase 1 isoforms
17. New insights into the interplay between the translation machinery and nonsense-mediated mRNA decay factors
18. Structural complexity in the KCTD family of Cullin3-dependent E3 ubiquitin ligases
19. Inhibition of homologous phosphorolytic ribonucleases by citrate may represent an evolutionarily conserved communicative link between RNA degradation and central metabolism
20. Target highlights in CASP13: Experimental target structures through the eyes of their authors
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