Gene Expression and RNA Processing

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Molecular Biology: Gene Expression & RNA

1. 📌 Essentials

  • Transcription: DNA to RNA synthesis by RNA polymerase.
  • RNA processing: Capping, polyadenylation, splicing (removal of introns).
  • Translation: mRNA decoding into amino acid chains by ribosomes.
  • Promoter sequences: Bacterial (-10, -35); Eukaryotic (TATA box).
  • RNA types: mRNA, tRNA, rRNA, snRNA, regulatory RNAs.
  • Genetic code: 64 codons, AUG start, UAA/UAG/UGA stop.
  • RNA modifications: 5′ cap, 3′ poly-A tail, sp.
  • RNA's catalytic role: Ribozymes, self-replication- Gene structure: Exons (coding), introns (noncoding).
  • Key differences: Prokaryotic vs eukaryotic transcription and processing.

2. 🧩 Key Structures & Components

  • RNA polymerase — enzyme synthesizing RNA from DNA template.
  • Promoters — DNA sequences signaling initiation (-10, -35 in bacteria; TATA in eukaryotes).
  • snRNPs — small nuclear ribonucleoproteins involved in splicing.
  • Ribosome — molecular machine translating mRNA; has A, P, E sites.
  • tRNA — adaptor molecules matching codons to amino acids.
  • mRNA — messenger RNA carrying genetic info.
  • Spliceosome — complex of snRNPs executing splicing.
  • Ubiquitin-proteasome system — degrades proteins tagged with ubiquitin.
  • RNA modifications — 5′ cap, 3′ poly-A tail, exon junction complexes.
  • Genetic code — codon table translating nucleotide triplets into amino acids.

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Anteprima del quiz

1. What is the primary role of RNA polymerase during transcription in both prokaryotic and eukaryotic cells?

2. What is the primary enzyme responsible for transcribing DNA into RNA?

3. Which of the following accurately describes the process of RNA splicing?

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Anteprima delle flashcard

DNA to RNA — process?

Transcription produces RNA from DNA.

Transcription — definition?

DNA to RNA synthesis by RNA polymerase.

Eukaryotic promoter — key element?

TATA box recognized by TFIID.

RNA processing — steps?

Capping, polyadenylation, splicing.

RNA splicing — mechanism?

snRNPs remove introns via lariat formation.

Translation — role?

Decodes mRNA into amino acids.

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