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  1. RNA is an intermediate molecule that actually carries the information in DNA to the ribosomes, so the proteins can be made. RNA is made from DNA in the nucleus by a process called transcription. See Figure 1. Let’s practice transcribing a segment of DNA.

  2. The amino acids needed for protein synthesis by each organism is encoded in their DNA. Using the processes of transcription and translation, you can, theoretically start with a strand of DNA and calculate the amino acid chains for which an organism is coded. DNA Strand. Transcription to mRNA.

  3. Summarise the process of translation Translation is the process of protein synthesis, whereby genetic information encoded by mRNA is translated into an amino acid sequence (i.e. polypeptide) at the ribosome

  4. Level 4: Explain how the structure of DNA allows it to replicate itself perfectly each time. Transcription: DNA vs. RNA Level 1: Identify the complementary RNA bases from the DNA stand:

  5. TRANSCRIPTION & TRANSLATION WORKSHEET Names. Complete the following chart by matching the correct RNA complementary base to the DNA. Recalling the lesson on DNA structure, identify the type of bond that holds the two strands of. Instructions: Feed the double stranded DNA made in the Replication exercise into RNA.

  6. DNA TRANSCRIPTION & TRANSLATION WORKSHEET. 1) Each DNA molecule has two sides, one is called the template from which the mRNA is constructed by RNA polymerase, and the other is the coding side which codes for a protein.

  7. DNA Replication. Explain how DNA replication is semi-conservative. ............................................................................................................................................................................... Outline how the results of the Meselson-Stahl experiment supported semi-conservative DNA replication.

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