Forms of DNA: Difference between revisions
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== A comparative representation of the three forms of DNA == | |||
''Sources'' <ref>Nucleic Acid Canonical Coordinates http://nucleix.mbu.iisc.ac.in/nacc/index.html</ref> | ''Sources'' <ref>Nucleic Acid Canonical Coordinates http://nucleix.mbu.iisc.ac.in/nacc/index.html</ref> | ||
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</jmol> | </jmol> | ||
== Helical Parameters of the three forms of DNA == | |||
DNA is a very flexible molecule and has the ability to exist in various forms based on the environmental conditions. Naturally occurring DNA double helices are classified into A, B and Z-types. A and B-forms of DNA are the right handed forms whereas [[Z-DNA]] is the left handed form. When hydrated the DNA generally assumes B-form. The A conformation is found when there is little water to interact with the helix and is also the conformation adopted by the RNA. The formation of Z-DNA occurs with the methylation of deoxycytosine residues and also during transcription where negative supercoiling stabilizes it. | DNA is a very flexible molecule and has the ability to exist in various forms based on the environmental conditions. Naturally occurring DNA double helices are classified into A, B and Z-types. A and B-forms of DNA are the right handed forms whereas [[Z-DNA]] is the left handed form. When hydrated the DNA generally assumes B-form. The A conformation is found when there is little water to interact with the helix and is also the conformation adopted by the RNA. The formation of Z-DNA occurs with the methylation of deoxycytosine residues and also during transcription where negative supercoiling stabilizes it. | ||
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</StructureSection> | </StructureSection> | ||
== References== | == See also == | ||
* [[DNA - History of the discovery and current applications (Hebrew)]] | |||
* [[DNA]] | |||
* [[Z-DNA]] | |||
== References == | |||
<references/> | <references/> | ||