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match each part of protein making with the evidence showing how dna structure relates to a proteins job (2 points) protein folding translation transcription dnas double helix structure this stable form protects the genetic code in the nucleus, making sure the instructions for proteins are not easily damaged. the amino acid chain folds into a special shape, which is needed for the protein to do its specific job in the cell. the mrna codon sequence is read by a ribosome to build a specific chain of amino acids, proving the code builds the protein. the dna sequence is copied into an mrna molecule, showing the order of dna bases determines the code sent to the ribosome
- Protein Folding: The amino - acid chain folds into a special shape, which is needed for the protein to do its specific job in the cell.
- Translation: The mRNA codon sequence is read by a ribosome to build a specific chain of amino acids, proving the code builds the protein.
- Transcription: The DNA sequence is copied into an mRNA molecule, showing the order of DNA bases determines the code sent to the ribosome.
- DNA's Double Helix Structure: This stable form protects the genetic code in the nucleus, making sure the instructions for proteins are not easily damaged.
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Protein Folding - The amino - acid chain folds into a special shape, which is needed for the protein to do its specific job in the cell.
Translation - The mRNA codon sequence is read by a ribosome to build a specific chain of amino acids, proving the code builds the protein.
Transcription - The DNA sequence is copied into an mRNA molecule, showing the order of DNA bases determines the code sent to the ribosome.
DNA's Double Helix Structure - This stable form protects the genetic code in the nucleus, making sure the instructions for proteins are not easily damaged.