6. Nucleic Acids and Protein Synthesis
Start with Concept to understand a topic, then use Question Bank to check what you know.
Your progress
Sign in to see your mastery and mistakes.
6.1 Structure of Nucleic Acids and DNA Replication
6.1.1Nucleotide structure
• Nucleotide structure, including phosphorylated nucleotide ATP
6.1.2Purines (adenine, guanine)
• Purines (adenine, guanine): double ring structure
6.1.3Pyrimidines (cytosine, thymine, uracil)
• Pyrimidines (cytosine, thymine, uracil): single ring structure
6.1.4DNA double helix structure
• DNA double helix structure: - Complementary base pairing between antiparallel strands (5′ to 3′ and 3′ to 5′) - Hydrogen bonding differences: C-G vs A-T - Phosphodiester bonds linking nucleotides
6.1.5Semi-conservative DNA replication
• Semi-conservative DNA replication during S phase: - Roles of DNA polymerase and DNA ligase - Leading strand vs lagging strand replication - DNA polymerase adds nucleotides only in 5′ to 3′ direction
6.1.6RNA (mRNA) structure
• RNA (mRNA) structure
6.2 Protein Synthesis
6.2.1Gene
• Gene: sequence of nucleotides coding for a polypeptide
6.2.2Universal genetic code and codons
• Universal genetic code: triplets code for amino acids or start/stop codons
6.2.3Transcription and translation roles
• Transcription and translation roles: - RNA polymerase - mRNA and codons - tRNA and anticodons - Ribosomes
6.2.4DNA strands in transcription
• Transcribed (template) strand vs non-transcribed strand
6.2.5Post-transcriptional modification
• Post-transcriptional modification in eukaryotes: removal of introns, joining of exons
6.2.6Gene mutations
• Gene mutations: changes in base pair sequence
6.2.7Types of mutations
• Types of mutations: substitution, deletion, insertion
6.2.8Effects on polypeptide produced
• Effects on polypeptide produced