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Nucleic Acids Quiz

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Nucleic acids basics quiz

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Nucleic Acids Quiz
 

Nucleic Acids QuizVersión en línea

Nucleic acids basics quiz

por QMH
1

Which statement best defines a nucleotide?

2

The primary role of DNA in a cell is to:

3

Which structural feature distinguishes deoxyribose from ribose?

4

DNA nucleotides are linked together by:

5

Which nitrogenous base pairing rule is correct in DNA?

6

Purines differ from pyrimidines because purines:

7

Why does DNA form a helical structure instead of a straight ladder?

8

Which component forms the backbone of a DNA molecule?

9

DNA strands are described as antiparallel because they:

10

Which nitrogenous base is found in RNA but not in DNA?

11

RNA differs from DNA primarily because RNA:

12

Which RNA type functions as an adaptor molecule during protein synthesis?

13

Which RNA molecule acts as a catalyst during protein synthesis?

14

The ability of RNA to act as both genetic material and catalyst supports the idea that:

15

Which molecule is classified as a nucleic acid but functions primarily in energy transfer?

16

The high-energy bonds in ATP are located between:

17

Where is DNA found in eukaryotic cells?

18

A nucleoside differs from a nucleotide because it:

19

Which statement correctly compares DNA and RNA?

20

The equal ratio of purines to pyrimidines in DNA is best explained by:

Feedback

A nucleotide always contains three parts: a base, a sugar, and a phosphate group.

DNA stores genetic information and passes it on to new cells. DNA does not directly make proteins or act as an enzyme.

Deoxyriboses oxygen atom compared to ribose. This difference is what distinguishes DNA sugar from RNA sugar.

Phosphodiester bonds join nucleotides together to form the DNA strand. Glycosidic and peptide bonds are involved in other types of molecules.

In DNA, adenine pairs with thymine and guanine pairs with cytosine. This specific base pairing helps maintain the structure of the DNA double helix.

Purines have a double-ring structure, while pyrimidines have a single-ring structure.

The DNA helix helps protect the hydrophobic bases from water, making the structure more stable.

The DNA backbone is made of alternating sugar and phosphate groups, while the bases are located inside the molecule.

The two DNA strands run in opposite directions, which is important for proper DNA structure and replication.

RNA contains uracil instead of thymine, which is found in DNA. Cytosine is present in both DNA and RNA.

RNA contains uracil instead of thymine and usually is single-stranded, while DNA contains thymine and is double-stranded.

tRNA carries amino acids to the ribosome and matches them to the codons on mRNA during protein synthesis.

rRNA forms part of the ribosome and helps catalyze the formation of peptide bonds during protein synthesis.

RNA can store genetic information and catalyze reactions, suggesting it could have been the first molecule in early life before DNA and proteins evolved.

ATP is a nucleotide that stores and transfers energy in cells, unlike DNA or RNA which mainly store genetic information.

The high-energy bonds are found between the phosphate groups, which release energy when broken during cellular processes.

DNA is mainly in the nucleus, but also in mitochondria and chloroplasts, while ribosomes and cytoplasm do not contain DNA.

A nucleoside has only a sugar and a nitrogenous base, while a nucleotide also includes a phosphate group.

RNA plays a key role in protein synthesis, while DNA stores genetic information. DNA contains deoxyribose and is double-stranded, unlike RNA.

DNA follows specific base pairing rules: adenine pairs with thymine and guanine pairs with cytosine, ensuring equal numbers of purines and pyrimidines.

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