In DNA, there are four types of nucleotides. These are Guanine, Cytosine, Thymine and Adenine. Guanine and Adenine are purines whereas Cytosine and Thymine are pyrimidines. Adenine will always bond with thymine in DNA. Therefore, guanine and cytosine bond together. These comnplementary base pairing allows the DNA to be replicated and is also used in protein synthesis.
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Yes, a phosphodiester bond is a type of covalent bond that links nucleotides in DNA and RNA molecules. It forms between the phosphate group of one nucleotide and the hydroxyl group of the sugar of another nucleotide.
A phosphodiester bond holds nucleotides together in DNA and RNA molecules. This bond links the 5' carbon of one nucleotide to the 3' carbon of the next nucleotide in the strand.
Phosphodiester bonds connect nucleotides in DNA and RNA. These bonds form between the phosphate group on one nucleotide and the sugar group on another nucleotide.
Hydrogen bonds are responsible for binding nucleotides on each strand of a DNA molecule. These bonds form between complementary base pairs: adenine (A) pairs with thymine (T) and guanine (G) pairs with cytosine (C).
At, GC
In producing a strand of DNA the nucleotides combine to form phosphodiester bonds.
the bond is called a hydrogen bond:)
So they could bond together
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A subunit of a nucleic acid is a nucleotide, which consists of a sugar molecule, a phosphate group, and a nitrogenous base. These nucleotides bond together to form the backbone of DNA and RNA molecules, which store and transfer genetic information.
so they cant disolve
Dideoxy nucleotides lack a hydroxyl group at the 3' carbon, which is crucial for the formation of phosphodiester bonds during DNA synthesis. Without this hydroxyl group, the dideoxy nucleotides cannot form a bond with the next nucleotide in the growing DNA strand, leading to termination of strand elongation.
Nucleotides can be considered weak acids because they contain phosphate groups which can release hydrogen ions in solution, leading to an acidic pH. The acidity of nucleotides is a result of the ionization of the phosphate groups, specifically the phosphodiester bond.
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.
Guanine bonds with cytosine through three hydrogen bonds in DNA.
Nucleotides polymerize through a condensation reaction between the phosphate group of one nucleotide and the sugar group of another nucleotide. This forms a phosphodiester bond, linking the nucleotides together to form a nucleic acid chain. DNA and RNA are examples of nucleic acids formed by polymerization of nucleotides.