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Ligand Engineering Using Yeast Surface Display

2014
The genotype-phenotype linkage provided by display technologies enables efficient synthesis, analysis, and selection of combinatorial protein libraries. This approach tremendously expands the protein sequence space that can be efficiently evaluated for a selectable function.
openaire   +2 more sources

Protein Engineering and Selection Using Yeast Surface Display

2015
Yeast surface display is a powerful technology for engineering a broad range of protein scaffolds. This protocol describes the process for de novo isolation of protein binders from large combinatorial libraries displayed on yeast by using magnetic bead separation followed by flow cytometry-based selection.
ANGELINI, Alessandro   +8 more
openaire   +3 more sources

Analysis of Selective Gene Activation in Yeast by Differential Display

Methods, 1998
TATA box binding protein-associated factors (TAF(II)s) are dispensable for transcription of most genes in yeast. To further investigate the in vivo functions of TAF(II)s, differential display was used to identify a small subset of yeast genes whose transcription is dependent on yeast TAF(II)145, the core TAF(II) component that contacts TATA box-binding
W C, Shen, M R, Green
openaire   +2 more sources

Simultaneous Yeast Display for Medical Biosensors

2022
Biosensors play an important role in medical diagnostics, industrial biotechnology, and environmental monitoring. A key challenge in biosensor design is developing complementary ligand binding domains which bind to the small molecule in a sandwich like fashion, causing fused biosensor output domains to co-localise and transduce a signal.
openaire   +1 more source

Yeast surface display for screening combinatorial polypeptide libraries

Nature Biotechnology, 1997
Display on the yeast cell wall is well suited for engineering mammalian cell-surface and secreted proteins (e.g., antibodies, receptors, cytokines) that require endoplasmic reticulum-specific post-translational processing for efficient folding and activity.
E T, Boder, K D, Wittrup
openaire   +2 more sources

Identification of Yeast Meiosis-Specific Genes by Differential Display

Methods, 1998
Meiosis, a specialized cell division process, occurs in all sexually reproducing organisms. During this process a diploid cell undergoes a single round of DNA replication followed by two rounds of nuclear division to produce four haploid gametes. In yeast, the meiotic products are packaged into four spores that are enclosed in a sac known as an ascus ...
D K, Nag, J, Axelrod
openaire   +2 more sources

A facile yeast-display approach for antibody mask discovery

Protein Engineering, Design and Selection
Abstract Tuning in vivo activity of protein therapeutics can improve their safety. In this vein, it is possible to add a ‘mask’ moiety to a protein therapeutic such that its ability to bind its target is prevented until the mask has been proteolytically removed, for instance by a tumor-associated protease. As such, new methods to isolate
Nithya M Badarinath   +13 more
openaire   +2 more sources

Yeast surface display technology: Mechanisms, applications, and perspectives

Biotechnology Advances
Microbial cell surface display technology, which relies on genetically fusing heterologous target proteins to the cell wall through fusion with cell wall anchor proteins, has emerged as a promising and powerful method with diverse applications in biotechnology and biomedicine.
Yibo, Li   +3 more
openaire   +2 more sources

Surface display of proteins in yeasts

2014
Surface display of proteins in bacteria and yeasts has proved to be an interesting method of protein immobilization for different purposes. Generally, proteins of interest are genetically engineered by fusing them to autochthonous cell wall proteins, or parts of autochthonous proteins directing them to the wall and anchoring them at the cell surface ...
openaire   +1 more source

An overview on display systems (phage, bacterial, and yeast display) for production of anticancer antibodies; advantages and disadvantages

International Journal of Biological Macromolecules, 2022
Nasser Pouladi   +2 more
exaly  

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