Exam 1, Topic 7: Proteins

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Last updated 7:39 PM on 9/18/26
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48 Terms

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Protein

A functional unit composed of one or more polypeptides. Each polypeptide is composed of a linear sequence of amino acids.

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Functions of proteins

Gene expression & regulation, movement, defense, metabolim, cell signaling, structural support, transport

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Membrane proteins

Transmemvbrane, membrane-associated, lipid linked, peripheral

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Amino acid

Monomer of proteins

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Amino acid structure

Central carbon + Hydrogen + amino group (N-terminus) + carboxyl group (C-terminus) + R-group

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Peptide bond

Covalent bond formed between C and N-terminus of 2 amino acids via dehydration synthesis

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Polypeptide

A chain of amino acids

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Direction of polypeptide synthesis

N-terminus to C-terminus (new amino acids always added to -COOH)

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What happens when amino acids are dissolved in water?

At neutral pH (7), the amino acid ionizes so that the amino group has a partial positive due to the H+ ion and the carboxyl group has a partial negative

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What form of amino acids are found in proteins?

L-amino acids

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Where are D-amino acids found?

The cell walls of certain bacteria

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Which amino acid does not have more than one isomeric form?

Glycerine

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How are the 20 amino acids differentiated?

By their R-groups

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Uncharged, polar R-groups

Contain C-O, C-N, or -OH

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Uncharged, nonpolar R-groups

Contains lots of C and N (some S)

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Positively charged (basic)

Contain H+ (have already accepted a proton)

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Negatively charged (acidic)

Contain O- (have already donated a proton)

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Primary structure

Linear amino acid sequence

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Secondary structure

First level of folding; hydrogen bonding occurs between peptide bonds

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Elements of secondary structure

α-helix, β-pleated sheet

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How are α-helices formed?

Hydrogen bonding between the C=O in the top coil and the N-H in the bottom coil

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How are β-pleated sheets formed?

Hydrogen bonding between the C=O and N-H when two segments of a polypeptide overlap in either a parallel (same directionality) or an antiparallel (opposite directionality) orientation

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Prion

Misfolded protein that somehow induces normal versions of the protein to fold the same incorrect way

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What structure is impacted in prions?

Secondary

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How are prions harmful?

They impact the function of the protein and create plaques that lead to spongiform encephalopathies (sponge-like brain disease)

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Examples of pongiform encephalopathies

Mad Cow, Scrapies, Creutzfeldt-Jakob

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Tertiary structure

The unique 3D folded structure; the final, most complex structure of a single polypeptide (also the final conformation of some proteins)

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What causes tertiary structure?

Interactions between R-groups and stabilizing forces

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Stabilizing forces

Hydrogen bonding between polar/charged side chains, hydrogen bonding between hydrophilic side chains and the backbone, ionic bonding between acidic & basic amino acids, hydrophobic clustering of nonpolar side chains, Van der Waals forces, and disulfide linkages

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Hydrophobic clustering

Water molecules surround a protein which causes it to contort so that hydrophobic side chains are on the inside and hydrophilic ones are on the outside

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Random coiled regions

Secondary structure elements that can act as hinges when tertiary structure is being formed

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Why is "random coiled regions" a terrible name?

NOT random, NOT coiled

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Van der Waals forces

Attractions between atoms that are at an optimal distance from each other

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Disulfide linkage

Covalent bond between 2 cysteine side chains

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Quaternary structure

The 3D structure of a protein with multiple subunits

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Subunit

A polypeptide in a protein with quaternary structure

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Homodimer

A protein with 2 identical subunits

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Heterodimer

A protein with 2 different subunits

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Hemoglobin

A heterotetramer with 2 alpha and 2 beta subunits; distributes oxygen to the bloodstream

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What is meant by the "stability" of a biomolecular force?

Whether or not the interaction is intentional; does it happen because it can happen or does it happen because the conditions are met?

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Most stable biomolecular force

Disulfide linkage (Covalent bonding)

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Second most stable biomolecular force

Ionic bonds

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Third most stable biomolecular force

Hydrogen bonding + hydrophobic clusters

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Least stable biomolecular force

Van der Waals forces (literally just happen for any atom)

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Denaturation

Removal/inactivation of stabilizing forces; reverts protein to primary structure

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Is the information for protein folding in its primary structure?

Yes; when a protein is renatured with the necessary stabilizing forces, it can refold properly

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Chaperone proteins

Proteins that help other proteins fold appropriately

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Sickle cell disease cause

A substitution mutation in the beta-globin gene