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EcoRV restriction enzyme molecule C014 / 2111

EcoRV restriction enzyme molecule C014  /  2111


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EcoRV restriction enzyme molecule C014 / 2111

EcoRV restriction enzyme. Molecular model of the type II restriction enzyme EcoRV (pink) bound to a cleaved section of DNA (deoxyribonucleic acid, grey). Restriction enzymes, also known as restriction endonucleases, recognise specific nucleotide sequences and cut the DNA at these sites. They are found in bacteria and archaea and are though to have evolved as a defence against viral infection. Type II restriction enzymes cut double stranded DNA. EcoRV is found in some strains of Escherichia coli bacteria. This structure is based on X-ray crystallography data

Science Photo Library features Science and Medical images including photos and illustrations

Media ID 9227005

© RAMON ANDRADE 3DCIENCIA/SCIENCE PHOTO LIBRARY

1rvc Asymmetric Unit Bacterial Bacteriology Cleaved Crystallography Deoxyribonucleases Dimer Complex E Coli Eco321 Ecorv Enzyme Escherichia Coli Homodimer Microbiology Molecular Biology Restriction Fragment Site Specific Type Ii Type Ii Restriction Endonuclease Biochemical Biochemistry Cutouts Deoxyribonucleic Acid Genetics Microbiological Molecular Molecular Model Protein


EDITORS COMMENTS
This print showcases the EcoRV restriction enzyme molecule C014/2111, a type II restriction enzyme found in certain strains of Escherichia coli bacteria. The pink-colored molecular model represents the EcoRV enzyme, while the grey section symbolizes a cleaved portion of DNA (deoxyribonucleic acid). Restriction enzymes, also known as restriction endonucleases, play a crucial role in genetic defense mechanisms against viral infections. They possess the ability to recognize specific nucleotide sequences within DNA and precisely cut at these sites. This particular structure is based on X-ray crystallography data. The black background enhances the visual impact of this artwork and emphasizes its scientific significance. It beautifully captures the intricate details of this homodimeric protein complex, highlighting its biological and biochemical properties. With its combination of biology, bacteriology, genetics, microbiology, and biochemistry elements depicted through stunning illustrations and cutouts, this image offers an artistic representation of an essential component in molecular biology research. It is important to note that this print is not associated with any commercial use or company affiliation. Created by RAMON ANDRADE 3DCIENCIA/SCIENCE PHOTO LIBRARY for educational purposes only; it serves as a valuable resource for scientists and enthusiasts alike seeking to explore the fascinating world of DNA manipulation and enzymatic processes.

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