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  2. Recombinant DNA - Wikipedia

    en.wikipedia.org/wiki/Recombinant_DNA

    Recombinant DNA molecules are sometimes called chimeric DNA because they can be made of material from two different species like the mythical chimera. rDNA technology uses palindromic sequences and leads to the production of sticky and blunt ends. The DNA sequences used in the construction of recombinant DNA molecules can originate from any ...

  3. Ribosomal DNA - Wikipedia

    en.wikipedia.org/wiki/Ribosomal_DNA

    The rDNA gene cluster of eukaryotes consists of the genes for the 18S, 5.8S and 28S rRNA, separated by the two ITS-1 and ITS-2 spacers. The active genome of eukaryotes contains several hundred copies of the rDNA transcriptional unit as tandem repeats , they are organized in nucleolus organizer regions (NORs) , [ 4 ] which in turn can be present ...

  4. List of recombinant proteins - Wikipedia

    en.wikipedia.org/wiki/List_of_recombinant_proteins

    The following is a list of notable proteins that are produced from recombinant DNA, using biomolecular engineering. [1] In many cases, recombinant human proteins have replaced the original animal-derived version used in medicine. The prefix "rh" for "recombinant human" appears less and less in the literature.

  5. Molecular cloning - Wikipedia

    en.wikipedia.org/wiki/Molecular_cloning

    Molecular cloning generally uses DNA sequences from two different organisms: the species that is the source of the DNA to be cloned, and the species that will serve as the living host for replication of the recombinant DNA. Molecular cloning methods are central to many contemporary areas of modern biology and medicine.

  6. Gene delivery - Wikipedia

    en.wikipedia.org/wiki/Gene_delivery

    Chemical based methods of gene delivery can use natural or synthetic compounds to form particles that facilitate the transfer of genes into cells. [2] These synthetic vectors have the ability to electrostatically bind DNA or RNA and compact the genetic information to accommodate larger genetic transfers. [ 5 ]

  7. Protein production - Wikipedia

    en.wikipedia.org/wiki/Protein_production

    Cell-free production of proteins is performed in vitro using purified RNA polymerase, ribosomes, tRNA and ribonucleotides. These reagents may be produced by extraction from cells or from a cell-based expression system. Due to the low expression levels and high cost of cell-free systems, cell-based systems are more widely used. [29]

  8. Genetic transformation - Wikipedia

    en.wikipedia.org/wiki/Genetic_transformation

    Typically the cells are incubated in a solution containing divalent cations (often calcium chloride) under cold conditions, before being exposed to a heat pulse (heat shock). Calcium chloride partially disrupts the cell membrane, which allows the recombinant DNA to enter the host cell. Cells that are able to take up the DNA are called competent ...

  9. Homologous recombination - Wikipedia

    en.wikipedia.org/wiki/Homologous_recombination

    Protein engineering with homologous recombination develops chimeric proteins by swapping fragments between two parental proteins. These techniques exploit the fact that recombination can introduce a high degree of sequence diversity while preserving a protein's ability to fold into its tertiary structure , or three-dimensional shape. [ 119 ]