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For simplicity most DNA molecular models omit both water and ions dynamically bound to B-DNA, and are thus less useful for understanding the dynamic behaviors of B-DNA in vivo. The physical and mathematical analysis of X-ray [ 16 ] [ 17 ] and spectroscopic data for paracrystalline B-DNA is thus far more complex than that of crystalline, A-DNA X ...
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In DNA double helix, the two strands of DNA are held together by hydrogen bonds. The nucleotides on one strand base pairs with the nucleotide on the other strand. The secondary structure is responsible for the shape that the nucleic acid assumes. The bases in the DNA are classified as purines and pyrimidines. The purines are adenine and guanine ...
The primary structure of a biopolymer is the exact specification of its atomic composition and the chemical bonds connecting those atoms (including stereochemistry).For a typical unbranched, un-crosslinked biopolymer (such as a molecule of a typical intracellular protein, or of DNA or RNA), the primary structure is equivalent to specifying the sequence of its monomeric subunits, such as amino ...
1.1 Examples of DNA molecular models. 1.2 Images for DNA structure determination from X-ray patterns. ... DNA molecular modeling applications. 1.4 Gallery of AFM images.
Complementarity (molecular biology) DNA; Directionality (molecular biology) Francis Crick; Genetics; Genetics in fiction; Glossary of cellular and molecular biology (M–Z) History of chemistry; Introduction to viruses; Molecular models of DNA; Nucleic acid design; Nucleotide base; Self-replication; Talk:DNA/Test; Talk:Gene/Archive 3; Talk ...
DNA for Beginners, republished as DNA: A Graphic Guide to the Molecule that Shook the World, is a 1983 graphic study guide to DNA written by Professor Israel Rosenfield from the City University of New York with Professor Edward Ziff from the New York University School of Medicine, and illustrated by Borin Van Loon.
Nucleic acids consist of a chain of linked units called nucleotides. Each nucleotide consists of three subunits: a phosphate group and a sugar (ribose in the case of RNA, deoxyribose in DNA) make up the backbone of the nucleic acid strand, and attached to the sugar is one of a set of nucleobases.