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  2. Molecular Structure of Nucleic Acids: A Structure for ...

    en.wikipedia.org/wiki/Molecular_Structure_of...

    Watson and Crick used many aluminium templates like this one, which is the single base Adenine (A), to build a physical model of DNA in 1953. When Watson and Crick produced their double helix model of DNA, it was known that most of the specialized features of the many different life forms on Earth are made possible by proteins.

  3. Nucleic acid double helix - Wikipedia

    en.wikipedia.org/wiki/Nucleic_acid_double_helix

    The double-helix model of DNA structure was first published in the journal Nature by James Watson and Francis Crick in 1953, [6] (X,Y,Z coordinates in 1954 [7]) based on the work of Rosalind Franklin and her student Raymond Gosling, who took the crucial X-ray diffraction image of DNA labeled as "Photo 51", [8] [9] and Maurice Wilkins, Alexander Stokes, and Herbert Wilson, [10] and base-pairing ...

  4. File:Template from Crick and Watson’s DNA molecular model ...

    en.wikipedia.org/wiki/File:Template_from_Crick...

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  5. Obsolete models of DNA structure - Wikipedia

    en.wikipedia.org/wiki/Obsolete_models_of_DNA...

    However, Watson and Crick soon identified several problems with these models: Negatively charged phosphates near the axis repel each other, leaving the question of how the three-chain structure stays together. In a triple-helix model (specifically Pauling and Corey's model), some of the van der Waals distances appear to be too small.

  6. File:DNA Model Crick-Watson.jpg - Wikipedia

    en.wikipedia.org/.../File:DNA_Model_Crick-Watson.jpg

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  7. Photo 51 - Wikipedia

    en.wikipedia.org/wiki/Photo_51

    Watson and Crick's calculations from Gosling and Franklin's photography gave crucial parameters for the size and structure of the helix. [ 16 ] Photo 51 became a crucial data source [ 17 ] that led to the development of the DNA model and confirmed the prior postulated double helical structure of DNA, which were presented in the series of three ...

  8. Hoogsteen base pair - Wikipedia

    en.wikipedia.org/wiki/Hoogsteen_base_pair

    Chemical structures for WatsonCrick and Hoogsteen A•T and G•C+ base pairs. The Hoogsteen geometry can be achieved by purine rotation around the glycosidic bond (χ) and base-flipping (θ), affecting simultaneously C8 and C1 ′ (yellow). [1] A Hoogsteen base pair is a variation of base-pairing in nucleic acids such as the A•T pair.

  9. File:Heart diagram-en.svg - Wikipedia

    en.wikipedia.org/wiki/File:Heart_diagram-en.svg

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