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Naming of Restriction Endonucleases Video Lecture | Biology Class 12 - NEET

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1. What are restriction endonucleases?
Ans. Restriction endonucleases, also known as restriction enzymes, are enzymes that recognize specific DNA sequences and cleave the DNA at or near these sequences. They are commonly found in bacteria and are part of the bacterial defense system against foreign DNA, such as bacteriophages.
2. How are restriction endonucleases named?
Ans. Restriction endonucleases are named after the bacterial species from which they are derived. The first letter of the name comes from the genus, followed by the first two letters of the species, and then a Roman numeral indicating the order of discovery. For example, EcoRI is named after Escherichia coli, strain RY13, and is the first restriction enzyme discovered from this strain.
3. What is the significance of restriction endonucleases in genetic engineering?
Ans. Restriction endonucleases play a crucial role in genetic engineering as they can be used to cut DNA at specific sites. This ability allows scientists to manipulate and rearrange DNA fragments, insert or delete genes, and create recombinant DNA molecules. Restriction endonucleases are essential tools for cloning, gene mapping, and gene expression studies.
4. How do restriction endonucleases recognize specific DNA sequences?
Ans. Restriction endonucleases recognize specific DNA sequences, known as recognition sites, through a process called base-pairing. The enzyme scans the DNA molecule until it finds the specific sequence it recognizes. This sequence is usually palindromic, meaning it reads the same on both strands when read in the 5'-3' direction. Once the enzyme finds the recognition site, it binds to the DNA and cleaves it.
5. Can restriction endonucleases be used for medical purposes?
Ans. Yes, restriction endonucleases have various medical applications. They are used in diagnostic tests to detect genetic diseases by cutting DNA at specific sites and analyzing the resulting fragments. Restriction endonucleases are also employed in gene therapy to insert therapeutic genes into the genome of patients. Additionally, they are useful in forensic science for DNA profiling and identification purposes.
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