The rule A-T; C-G is a complementary base pair, and is semi-conservative replication. The Hydrogen bonds will always pair in these exact pairs.
Phophodiester bonds are the one that connect the nucleotides next to each other on the same strand. Weak hydrogen bonds join the two complementary nucleotides and thus the two strands of the DNA together.
DNA ligase is the enzyme used to join the DNA strand that is replicated in small segments called Okazaki fragments. It helps to seal the breaks in the sugar-phosphate backbone of the DNA, ensuring that the fragments are connected into a continuous strand.
Nucleotide dehydration synthesis is a process where nucleotides join together to form DNA and RNA molecules. During this process, a water molecule is removed, allowing the nucleotides to bond together. This contributes to the formation of DNA and RNA by creating the long chains of nucleotides that make up these molecules.
DNA polymerase is an enzyme that catalyzes the formation of a phosphodiester bond between adjacent nucleotides during DNA replication. RNA polymerase is responsible for synthesizing RNA molecules by joining nucleotides together.
Nucleic acid is formed with a sugar phosphate backbone. The sugar can be made of a ribose surgar to from RNA or a deoxyribose sugar for DNA. The final component is a nitrogenous base, which can be adenosine, cytosine etc.
watson-base pairing
The DNA molecule is composed of nucleotides, which consist of a sugar molecule (deoxyribose), a phosphate group, and one of four nitrogenous bases (adenine, thymine, cytosine, or guanine). These nucleotides join together in a specific sequence to form the double helix structure of the DNA molecule.
A-T and G-C
The strands of the DNA ladder are made of nucleotides, which consist of a sugar molecule (deoxyribose), a phosphate group, and one of four nitrogenous bases: adenine (A), thymine (T), guanine (G), or cytosine (C). These nucleotides join together to form the double helix structure of DNA.
In nucleotides, sugars are joined to phosphate groups by phosphodiester bonds. This bond is formed between the 5' carbon of one sugar molecule and the 3' carbon of another sugar molecule, creating a sugar-phosphate backbone in DNA and RNA strands.
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Nucleic acids are made up of smaller units called nucleotides. Each nucleotide consists of a sugar molecule (ribose or deoxyribose), a phosphate group, and a nitrogenous base (adenine, guanine, cytosine, thymine, or uracil). These nucleotides join together through phosphodiester bonds to form the backbone of DNA and RNA molecules.
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