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The process of converting RNA code into a sequence of amino acids is called:
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
DNA is in the following shape:
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
During transcription DNA serves a code to make a sequence of
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
The DNA codon AGA codes for Arginine. The sequence of steps would be
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
Which mutation would likely cause the greatest impact
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
What are some differences between mRNA and tRNA?
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
The pairing of ___ in DNA is the main reason DNA is able to make copies of itself
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
Who is credited with the discovery of DNA
mRNA
translation
tRNA is a molecule bringing an amino acid
Double Helix
nitrogen bases
Frameshift mutation
AGA to UCU to tRNA molecule holding Arginine
James Watson, Francis Crick, and Rosalind Franklin
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