Targeting at the Nanoscale: A Novel S-Layer Fusion Protein Enabling Controlled Immobilization of Biotinylated Molecules

scientific article published on 4 November 2016

Targeting at the Nanoscale: A Novel S-Layer Fusion Protein Enabling Controlled Immobilization of Biotinylated Molecules is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3390/NANO6110199
P932PMC publication ID5245738
P698PubMed publication ID28335327

P2093author name stringMelinda Varga
P2860cites workS-Layer proteinsQ24548994
Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Q25938983
Truncation Derivatives of the S-Layer Protein of Sporosarcina ureae ATCC 13881 (SslA): Towards Elucidation of the Protein Domain Responsible for Self-Assembly.Q51184235
A recombinant bacterial cell surface (S-layer)-major birch pollen allergen-fusion protein (rSbsC/Bet v1) maintains the ability to self-assemble into regularly structured monomolecular lattices and the functionality of the allergen.Q53876092
Biomolecular engineering at interfacesQ57357511
Characterization and crystallization of core streptavidinQ69399779
Isolation, gene structure, and comparative analysis of the S-layer gene sslA of Sporosarcina ureae ATCC 13881Q79624407
Bacterial S-layersQ33656568
S-layer-streptavidin fusion proteins as template for nanopatterned molecular arraysQ34378587
Intersubunit contacts made by tryptophan 120 with biotin are essential for both strong biotin binding and biotin-induced tighter subunit association of streptavidinQ34420433
Crystalline bacterial cell-surface layersQ34563551
Site-directed mutagenesis studies of the high-affinity streptavidin-biotin complex: contributions of tryptophan residues 79, 108, and 120Q34656789
Heterotetramers formed by an S-layer-streptavidin fusion protein and core-streptavidin as a nanoarrayed template for biochip developmentQ38306185
Regular Arrays of Macromolecules on Bacterial Cell Walls: Structure, Chemistry, Assembly, and FunctionQ39742514
Charge distribution on the S layer of Bacillus stearothermophilus NRS 1536/3c and importance of charged groups for morphogenesis and functionQ39957095
Three-dimensional structure of the tetragonal surface layer of Sporosarcina ureaeQ39961150
Glutathione-mediated release of functional plasmid DNA from positively charged quantum dotsQ39996833
Heterologous reattachment of regular arrays of glycoproteins on bacterial surfacesQ40344272
Construction of a functional S-layer fusion protein comprising an immunoglobulin G-binding domain for development of specific adsorbents for extracorporeal blood purification.Q40673173
Protein patterningQ40851407
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue11
P407language of work or nameEnglishQ1860
P577publication date2016-11-04
P1433published inNanomaterialsQ27724944
P1476titleTargeting at the Nanoscale: A Novel S-Layer Fusion Protein Enabling Controlled Immobilization of Biotinylated Molecules
P478volume6

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Q64227840Slp-coated liposomes for drug delivery and biomedical applications: potential and challengescites workP2860

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