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From Gene to Protein

A gene is a length of DNA whose base order fixes the amino acid order of one protein, read three bases at a time. Covers the messenger copy, the ribosome, and reading a codon table.

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What a learner can do afterwards

  • Uses a codon table to turn a short base sequence into a run of amino acids.
  • Explains why the code is read in threes rather than singly or in pairs.
  • Says where in the cell each stage happens and why the message has to leave the nucleus.

1 · Read

A gene is a length of DNA whose base order fixes the amino acid order of one protein. The code is read in three base words called codons. Two base words give only 16 combos, too few for 20 amino acids, so three base words give 64, which is plenty. AUG starts every protein and three stop triplets end it.

First the gene is copied into a travelling message. In the nucleus, an enzyme called RNA polymerase reads one DNA strand and writes matching mRNA, using U instead of T. The message then leaves the nucleus, because the building machinery waits outside it in the cytoplasm.

Try it together

At a ribosome the message is read triplet by triplet, and carrier molecules called tRNA ferry the matching amino acids into a chain. Learn this mini table: AUG means start, UUU means phenylalanine, GGG means glycine, UAA means stop. So AUG UUU GGG UAA builds start, phenylalanine, glycine, then ends. The chain folds into a working shape, and the shape decides the job.

Good to know

Decode slowly in groups of three from the start codon. Never regroup the letters, since shifted groups spell different acids. Stop at the first stop triplet.

Copy the gene in the nucleus, read it in threes at the ribosome, fold the chain.

2 · Watch

Take it off screen

Print a worksheetA4 with an answer key page for grown-ups. No screen, no internet.

Where it sits

Then practise

8 questions wait behind this lesson, each with its answer explained. Every answer feeds the sky: stars light as they are learned, and dim when it is time to come back.

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From Gene to Protein · Science, ages 15 to 16 · LightMySky