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  2. Cell-free protein synthesis - Wikipedia

    en.wikipedia.org/wiki/Cell-free_protein_synthesis

    Cell-free protein synthesis, also known as in vitro protein synthesis or CFPS, is the production of protein using biological machinery in a cell-free system, that is, without the use of living cells. The in vitro protein synthesis environment is not constrained by a cell wall or homeostasis conditions necessary to maintain cell viability. [ 1 ]

  3. Xbra - Wikipedia

    en.wikipedia.org/wiki/Xbra

    Xbra is a homologue of Brachyury (T) gene for Xenopus. [1] It is a transcription activator involved in vertebrate gastrulation which controls posterior mesoderm patterning and notochord differentiation by activating transcription of genes expressed throughout mesoderm. [2]

  4. Cell-free system - Wikipedia

    en.wikipedia.org/wiki/Cell-free_system

    In vitro biosystems can be easily controlled and accessed without membranes. [16] Notably, in work leading to a Nobel prize the Nirenberg and Matthaei experiment used a cell-free system, of the cell extract-based type, to incorporate chosen amino acids tagged radioactively into synthesized proteins with 30S extracted from E. coli .

  5. Organogenesis - Wikipedia

    en.wikipedia.org/wiki/Organogenesis

    In vitro and in response to specific cocktails of hormones (mainly auxins and cytokinins), most plant tissues can de-differentiate and form a mass of dividing totipotent stem cells called a callus. Organogenesis can then occur from those cells. The type of organ that is formed depends on the relative concentrations of the hormones in the medium.

  6. Cell-free protein array - Wikipedia

    en.wikipedia.org/wiki/Cell-free_protein_array

    In the in situ method, protein synthesis is carried out on a protein array surface that is pre-coated with a protein-capturing reagent or antibody.Once the newly synthesized proteins are released from the ribosome, the tag sequence that is also synthesized at the N-or C-terminus of each nascent protein will be bound by the capture reagent or antibody, thus immobilizing the proteins to form an ...

  7. Mesenchyme - Wikipedia

    en.wikipedia.org/wiki/Mesenchyme

    The mesenchyme originates from the mesoderm. [6] From the mesoderm, the mesenchyme appears as an embryologically primitive "soup". This "soup" exists as a combination of the mesenchymal cells plus serous fluid plus the many different tissue proteins. Serous fluid is typically stocked with the many serous elements, such as sodium and chloride.

  8. Mesoderm - Wikipedia

    en.wikipedia.org/wiki/Mesoderm

    The intermediate mesoderm connects the paraxial mesoderm with the lateral plate mesoderm, and differentiates into urogenital structures. [12] In upper thoracic and cervical regions, this forms the nephrotomes. In caudal regions, it forms the nephrogenic cord. It also helps to develop the excretory units of the urinary system and the gonads. [4]

  9. Systematic evolution of ligands by exponential enrichment

    en.wikipedia.org/wiki/Systematic_evolution_of...

    Systematic evolution of ligands by exponential enrichment (SELEX), also referred to as in vitro selection or in vitro evolution, is a combinatorial chemistry technique in molecular biology for producing oligonucleotides of either single-stranded DNA or RNA that specifically bind to a target ligand or ligands.