DNA
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=== Complementary Bases === | === Complementary Bases === | ||
- | The two chains in a DNA are joined by hydrogen bonds between specific bases. Adenine forms base pairs with thymine and guanine with cytosine. This specific base pairing between <scene name='User:Adithya_Sagar/Workbench_newDNA/B-dna/14'>Adenine-Thymine</scene> and <scene name='User:Adithya_Sagar/Workbench_newDNA/B-dna/15'>Guanine-Cytosine</scene> is known as the Watson-Crick base pairing. The specificity of hydrogen bonding between bases leads to complementarity in the sequence of nucleotides in the two chains. Thus in a strand of DNA the content of adenine is equal to that of thymine and the guanine content is equal to the cytosine content. In general DNA with higher GC content is more stable than the one with higher AT content owing to the stabilization due to base stacking interactions. | + | The two chains in a DNA are joined by hydrogen bonds between specific bases. Adenine forms base pairs with thymine and guanine with cytosine. This specific base pairing between <scene name='User:Adithya_Sagar/Workbench_newDNA/B-dna/14'>Adenine-Thymine</scene> and <scene name='User:Adithya_Sagar/Workbench_newDNA/B-dna/15'>Guanine-Cytosine</scene> is known as the Watson-Crick base pairing. The specificity of hydrogen bonding between bases leads to complementarity in the sequence of nucleotides in the two chains.<ref name='structure'>A Structure for Deoxyribose Nucleic Acid |
+ | Watson J.D. and Crick F.H.C. | ||
+ | Nature 171, 737-738 (1953)</ref> Thus in a strand of DNA the content of adenine is equal to that of thymine and the guanine content is equal to the cytosine content. In general DNA with higher GC content is more stable than the one with higher AT content owing to the stabilization due to base stacking interactions. | ||
=== DNA denaturation and renaturation === | === DNA denaturation and renaturation === |
Revision as of 04:16, 6 August 2011
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See Also
- Forms of DNA
- 1ply
- DNA Replication, Repair, and Recombination - Articles in Proteopedia concerning DNA Replication, Repair, and/or Recombination
- DNA Replication,Transcription and Translation
- Z-DNA
- Transfer ribonucleic acid (tRNA)
- For additional information, see: Nucleic Acids
References
- ↑ 1.0 1.1 http://www.genome.gov/25520880
- ↑ Dahm R. Discovering DNA: Friedrich Miescher and the early years of nucleic acid research. Hum Genet. 2008 Jan;122(6):565-81. Epub 2007 Sep 28. PMID:17901982 doi:10.1007/s00439-007-0433-0
- ↑ 3.0 3.1 A Structure for Deoxyribose Nucleic Acid Watson J.D. and Crick F.H.C. Nature 171, 737-738 (1953)
- ↑ 4.0 4.1 4.2 Watson, James D, Nancy H. Hopkins, Jeffrey W. Roberts, Joan Argetsinger Steitz, Alan M.Weiner Molecular Biology of Gene (4th ed.). The Benjamin/Cummings Publishing Company Inc.pp. 239-249. ISBN 0-8053-9612-8
- ↑ SantaLucia J Jr. A unified view of polymer, dumbbell, and oligonucleotide DNA nearest-neighbor thermodynamics. Proc Natl Acad Sci U S A. 1998 Feb 17;95(4):1460-5. PMID:9465037
- ↑ Saenger, Wolfram (1984). Principles of Nucleic Acid Structure (1st ed). Springer-Verlag. pp. 398. ISBN 0-12-645750-6.
- ↑ Rawn,David J. "Biochemistry"(1st ed.) Harper&Row,Publishers, Inc.pp. 1024-1050. ISBN-0-06045335-4
Proteopedia Page Contributors and Editors (what is this?)
Adithya Sagar, Eran Hodis, Ala Jelani, Eric Martz, Wayne Decatur, Karsten Theis, Alexander Berchansky, Karl Oberholser, Joel L. Sussman, Ann Taylor, David Canner, Angel Herraez, Joseph M. Steinberger, Frédéric Dardel