64) The side chain (R group) of the amino acid serine is –CH2–OH. The side chain of the amino
acid leucine is –CH2–CH–(CH3)2. Where would you expect to find these amino acids in a
globular protein in aqueous solution?
A) Serine would be on the exterior, and leucine would be in the interior of the globular protein.
B) Serine would be in the interior, and leucine would be on the exterior of the globular protein.
C) Both serine and leucine would be in the interior of the globular protein.
D) Both serine and leucine would be on the exterior of the globular protein.
65) Changing a single amino acid in a protein consisting of 433 amino acids would
A) always alter the primary structure of the protein but never alter its tertiary structure or
function.
B) always alter the primary structure of the protein and sometimes alter its tertiary structure or
function.
C) always alter the primary and tertiary structure of the protein but never alter its function.
D) sometimes alter the primary and tertiary structure of the protein but always alter its function.
66) Normal hemoglobin is a tetramer, consisting of two molecules of β-globin and two
molecules of α-globin. In sickle-cell disease, as a result of a single amino acid change, the
mutant hemoglobin tetramers associate with each other and assemble into large fibers. Based on
this information alone, we can conclude that sickle-cell hemoglobin exhibits
A) altered primary structure.
B) altered secondary structure.
C) altered tertiary structure.
D) altered quaternary structure.
E) altered primary structure and altered quaternary structure; the secondary and tertiary
structures may or may not be altered.