In transfer RNA, yes, unless there is a mutation.
Adenine always pairs with thymine Cytosine always pairs with guanine.
A purine will always pair with a pyrimidine. Examples of purines are adenine (pairs with thymine or uracil) and guanine (pairs with cytosine). Examples of pyrimidines are thymine (pairs with adenine), uracil (pairs with adenine), and cytosine (pairs with guanine).
Cytosine binds [bonds] with Guanine.
Adenine is paired with thymine.Cytosine is paired with guanine.
The guanine-cytosine base pair is harder to break than the adenine-thymine base pair due to the presence of three hydrogen bonds between guanine and cytosine, compared to two hydrogen bonds between adenine and thymine. This makes the guanine-cytosine pair more stable and stronger.
The nitrogenous base units of a nucleic acid are Adenine, Cytosine, Guanine, and Thymine. (in Dna) in RNA Thymine is replaced with Uracil. These base pair are often abreviated to A,C,T,G, and U. Adenine will always pair with Thymine. Cytosine will always pair with guanine.
Adenine always pairs with thymine in a DNAmolecule.
Adenine and Thymine A = T, Cytosine and Guanine C = G.
Cytosine (C) and Guanine (G) pair, as do Adenine (A) and Thymine (T).
Adenine (A) can pair with thymine (T), and cytosine (C) can pair with guanine (G) in DNA through hydrogen bonding. This complementary base pairing is essential for the stability and accurate replication of DNA molecules.
adenine with thymine cytosine with guanine adenine with uracil cytosine with guanine
Adenine pairs with thymine and guanine pairs with cytosine due to the specific hydrogen bonding patterns between the bases, which allow for stable base pairing. Adenine forms two hydrogen bonds with thymine, while guanine forms three hydrogen bonds with cytosine. The base pairing rule is primarily determined by the size and shape of the nitrogenous bases, as well as their ability to form hydrogen bonds, ensuring consistent spacing in the DNA double helix. This complementary pairing is crucial for accurate DNA replication and transcription.