recombinant DNA - ορισμός. Τι είναι το recombinant DNA
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Τι (ποιος) είναι recombinant DNA - ορισμός

DNA MOLECULES FORMED BY LABORATORY METHODS
Recombinant proteins; Recombinant protein; Gene splicing; Dna, recombinant; Recombinant dna; Recombinant technology; Recombinant dna molecules; Recombinant dna technology; DNA Recombination; Recombinant gene; Chimeric DNA; Synthetic insulin production; Recombinant genes; Recombinant biotechnology; Recombinant-DNA; DNA, recombinant
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Asilomar Conference on Recombinant DNA         
  • [[Paul Berg]], a leading researcher in the field of [[recombinant DNA technology]], who subsequently shared the 1980 [[Nobel Prize in Chemistry]] with [[Walter Gilbert]] and [[Frederick Sanger]], helped organize the 1975 conference.
ACADEMIC CONFERENCE HELD IN 1975
Asilomar conference on recombinant DNA; Asilomar conference; Asilomar Conference; User:Ragesoss/Asilomar conference on recombinant DNA; Asilomar conference on recombinant dna
The Asilomar Conference on Recombinant DNA was an influential conference organized by Paul Berg,“First recombinant DNA.” The Human Genome Project.
DNA glycosylase         
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Hydrolysis of cytosine to uracil
ENZYMES INVOLVED IN BASE EXCISION REPAIR
GO system; Dna glycosylases; Dna glycosylase; DNA glycosylases; Dna Glycosylase
DNA glycosylases are a family of enzymes involved in base excision repair, classified under EC number EC 3.2.
DNA bank         
STORAGE OF PHYSICAL DNA SAMPLES
Dna bank; DNA Bank
DNA banking is the secure, long term storage of an individual’s genetic material. DNA is most commonly extracted from blood, but can also be obtained from saliva and other tissues.

Βικιπαίδεια

Recombinant DNA

Recombinant DNA (rDNA) molecules are DNA molecules formed by laboratory methods of genetic recombination (such as molecular cloning) that bring together genetic material from multiple sources, creating sequences that would not otherwise be found in the genome.

Recombinant DNA is the general name for a piece of DNA that has been created by combining two or more fragments from different sources. Recombinant DNA is possible because DNA molecules from all organisms share the same chemical structure, differing only in the nucleotide sequence. 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 species. For example, plant DNA can be joined to bacterial DNA, or human DNA can be joined with fungal DNA. In addition, DNA sequences that do not occur anywhere in nature can be created by the chemical synthesis of DNA and incorporated into recombinant DNA molecules. Using recombinant DNA technology and synthetic DNA, any DNA sequence can be created and introduced into living organisms.

Proteins that can result from the expression of recombinant DNA within living cells are termed recombinant proteins. When recombinant DNA encoding a protein is introduced into a host organism, the recombinant protein is not necessarily produced. Expression of foreign proteins requires the use of specialized expression vectors and often necessitates significant restructuring by foreign coding sequences.

Recombinant DNA differs from genetic recombination in that the former results from artificial methods while the latter is a normal biological process that results in the remixing of existing DNA sequences in essentially all organisms.

Παραδείγματα από το σώμα κειμένου για recombinant DNA
1. In the new guidelines, the FDA argues that "recombinant DNA constructs" inserted into animals are by definition drugs.
2. Federoff, executive dean of Georgetown Medical Center and chairman of the NIH Recombinant DNA Advisory Committee, which is investigating in concert with outside experts.