44 results on '"Amillis, Sotiris"'
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2. Structural Aspects of UapA the H+-Xanthine/Uric Acid Transporter from Aspergillus nidulans
3. Advancing Desulfurization in the Model Biocatalyst Rhodococcus qingshengii IGTS8 via an In Locus Combinatorial Approach
4. Substrate Recognition Properties from an Intermediate Structural State of the UreA Transporter
5. Interplay between Sulfur Assimilation and Biodesulfurization Activity in Rhodococcus qingshengii IGTS8: Insights into a Regulatory Role of the Reverse Transsulfuration Pathway
6. The interplay between sulfur assimilation and biodesulfurization phenotype in Rhodococcus qingshengii IGTS8: Insights into a regulatory role of the reverse transsulfuration pathway
7. The interplay between sulfur metabolism and desulfurization profile in Rhodococcus: Unraveling the role of the transsulfuration pathway
8. An Alphafold2 Intermediate Conformational State Provides Insights on Urea Transporter Function
9. Translocation of nutrient transporters to cell membrane via Golgi bypass in Aspergillus nidulans
10. The peroxisomal SspA protein is redundant for purine utilization but essential for peroxisome localization in septal pores in Aspergillus nidulans
11. A pair of non-optimal codons are necessary for the correct biosynthesis of the Aspergillus nidulans urea transporter, UreA
12. Nutrient transporter translocation to the plasma membrane via a Golgi-independent unconventional route
13. Structural Lipids Enable the Formation of Functional Oligomers of the Eukaryotic Purine Symporter UapA
14. Secretory Vesicle Polar Sorting, Endosome Recycling and Cytoskeleton Organization Require the AP-1 Complex in Aspergillus nidulans
15. The AP-1 complex is essential for fungal growth via its role in secretory vesicle polar sorting, endosomal recycling and cytoskeleton organization
16. Structural lipids enable the formation of functional oligomers of the eukaryotic purine symporter UapA
17. Substrate Specificity of the FurE Transporter Is Determined by Cytoplasmic Terminal Domain Interactions
18. The AP-2 complex has a specialized clathrin-independent role in apical endocytosis and polar growth in fungi
19. Comparative genomics reveals high biological diversity and specific adaptations in the industrially and medically important fungal genus Aspergillus
20. Cryptic purine transporters inAspergillus nidulansreveal the role of specific residues in the evolution of specificity in the NCS1 family
21. Author response: The AP-2 complex has a specialized clathrin-independent role in apical endocytosis and polar growth in fungi
22. Structure of eukaryotic purine/H+ symporter UapA suggests a role for homodimerization in transport activity
23. BsdABsd2-dependent vacuolar turnover of a misfolded version of the UapA transporter along the secretory pathway: prominent role of selective autophagy
24. Characterization of AnNce102 and its role in eisosome stability and sphingolipid biosynthesis
25. Oligomerization of the UapA Purine Transporter Is Critical for ER-Exit, Plasma Membrane Localization and Turnover
26. Expression and specificity profile of the major acetate transporter AcpA in Aspergillus nidulans
27. Purine utilization proteins in the Eurotiales: Cellular compartmentalization, phylogenetic conservation and divergence
28. Modelling and mutational analysis of Aspergillus nidulans UreA, a member of the subfamily of urea/H + transporters in fungi and plants
29. Regulation of expression and kinetic modeling of substrate interactions of a uracil transporter inAspergillus nidulans
30. Pseudo-constitutivity of nitrate-responsive genes in nitrate reductase mutants
31. The arrestin‐like protein ArtA is essential for ubiquitination and endocytosis of the UapA transporter in response to both broad‐range and specific signals
32. Modeling, Substrate Docking, and Mutational Analysis Identify Residues Essential for the Function and Specificity of a Eukaryotic Purine-Cytosine NCS1 Transporter
33. Aspergillus nidulansCkiA is an essential casein kinase I required for delivery of amino acid transporters to the plasma membrane
34. Completing the purine utilisation pathway of Aspergillus nidulans
35. Mutational Analysis and Modeling Reveal Functionally Critical Residues in Transmembrane Segments 1 and 3 of the UapA Transporter
36. UreA, the major urea/H+ symporter in Aspergillus nidulans
37. Transport-dependent endocytosis and turnover of a uric acid-xanthine permease
38. Convergent evolution and orphan genes in the Fur4p‐like family and characterization of a general nucleoside transporter in Aspergillus nidulans
39. Specific Interdomain Synergy in the UapA Transporter Determines Its Unique Specificity for Uric Acid among NAT Carriers
40. Characterization and kinetics of the major purine transporters in Aspergillus fumigatus
41. A Novel-type Substrate-selectivity Filter and ER-exit Determinants in the UapA Purine Transporter
42. Transcription of purine transporter genes is activated during the isotropic growth phase of Aspergillus nidulans conidia
43. The AzgA Purine Transporter of Aspergillus nidulans
44. Substitution F569S converts UapA, a specific uric acid-xanthine transporter, into a broad specificity transporter for purine-related solutes
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