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  2. Phage display - Wikipedia

    en.wikipedia.org/wiki/Phage_display

    The display of cDNA libraries via phage display is an attractive alternative to the yeast-2-hybrid method for the discovery of interacting proteins and peptides due to its high throughput capability. [ 34 ] pVI has been used preferentially to pVIII and pIII for the expression of cDNA libraries because one can add the protein of interest to the ...

  3. Creative Biolabs - Wikipedia

    en.wikipedia.org/wiki/Creative_Biolabs

    Creative Biolabs, Inc. is a life-science company which produces and supplies biotech products and services for early drug discovery and development, including various phage display libraries [1] such as pre-made libraries, [2] phage display services, [3] [4] antibody sequencing, [5] and antibody humanization. [6]

  4. Methods to investigate protein–protein interactions - Wikipedia

    en.wikipedia.org/wiki/Methods_to_investigate...

    Phage display is used for the high-throughput screening of protein interactions. In-vivo crosslinking of protein complexes using photo-reactive amino acid analogs was introduced in 2005 by researchers from the Max Planck Institute [ 5 ] In this method, cells are grown with photoreactive diazirine analogs to leucine and methionine , which are ...

  5. mRNA display - Wikipedia

    en.wikipedia.org/wiki/MRNA_display

    mRNA display is a display technique used for in vitro protein, and/or peptide evolution to create molecules that can bind to a desired target. The process results in translated peptides or proteins that are associated with their mRNA progenitor via a puromycin linkage.

  6. Protein engineering - Wikipedia

    en.wikipedia.org/wiki/Protein_engineering

    The phage's life cycle is designed in such a way that the transfer is correlated with the activity of interest from the enzyme. This method is advantageous because it requires minimal human intervention for the continuous evolution of the gene.

  7. Combinatorial biology - Wikipedia

    en.wikipedia.org/wiki/Combinatorial_biology

    Comparison of natural and synthetic selection processes for peptide generation. In biotechnology, combinatorial biology is the creation of a large number of compounds (usually proteins or peptides) through technologies such as phage display. Similar to combinatorial chemistry, compounds are produced by biosynthesis rather than organic chemistry.

  8. Bacterial display - Wikipedia

    en.wikipedia.org/wiki/Bacterial_display

    Competing methods for protein evolution in vitro are phage display, ribosome display, yeast display, and mRNA display. Bacteriophage display is the most common type of display system used [1] although bacterial display is becoming increasingly popular as technical challenges are overcome. Bacterial display combined with FACS also has the ...

  9. Ribosome display - Wikipedia

    en.wikipedia.org/wiki/Ribosome_display

    Competing methods for protein evolution in vitro are phage display, yeast display, bacterial display, and mRNA display. [5] peptides (Mattheakis, Bhatt and Dow) As it is performed entirely in vitro, there are two main advantages over other selection technologies. First, the diversity of the library is not limited by the transformation ...