Amino Acid Side-Chain Properties Flashcards: Polarity & Charge
56 flashcards on amino acid side-chain groups, charge at pH 7, and common property distinctions, with supplied-pKa reasoning and key exceptions.
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Practice amino acid side-chain properties with 56 original flashcards for learners who already recognize the 20 standard amino-acid names. The cards ask you to recall a named amino acid’s property group, identify an amino acid or a specified set from a functional-group clue, distinguish commonly confused properties, and infer predominant side-chain charge from supplied pH and pKa values.
The reference pH is 7. Charge means the R group alone, excluding backbone groups and peptide termini. Ordinary charge statements use a simple aqueous reference model, not a guarantee about a particular site inside a protein. The calculations supply their pKa assumptions; one cysteine example changes the pH to 9.3, and one histidine example supplies a shifted local pKa. You do not need to memorize exact pKa values.
This deck uses a four-group study convention: nonpolar (glycine, alanine, valine, leucine, isoleucine, methionine, proline, phenylalanine, tryptophan); polar and predominantly uncharged at pH 7 (serine, threonine, asparagine, glutamine, cysteine, tyrosine); acidic (aspartate, glutamate); and basic (lysine, arginine, histidine). These are broad labels. Tryptophan has a polar hydrogen-bond donor; cysteine can behave hydrophobically; tyrosine is both aromatic and polar. Histidine belongs to the basic family but is mostly neutral at pH 7 when its side-chain pKa is 6.0. Aromaticity, polarity, and charge are not mutually exclusive descriptors.
The sequence starts with charge scope and classification, introduces the 20 amino acids in an interleaved order, then moves through property clues, comparisons, and pH reasoning. Related recall directions are separated so a nearby answer is less likely to give away the next one. Glycine’s flexibility, proline’s ring and backbone donor exception, cysteine’s disulfides, aromatic side chains, and acid-versus-amide distinctions receive focused practice.
The deck does not test one-letter or three-letter codes, structure drawings, exact pKa memorization, pI calculations, codons, dietary requirements, clinical decisions, or full-course/exam coverage. Broad clues are only reversed when the requested answer is a clear amino acid or an explicitly requested set. Structure and code recognition are covered separately in the amino acid structures and codes deck.
The questions, answers, examples, sequence, and metadata were independently authored from common biochemical facts. Fact checks used EMBL-EBI’s side-chain chemistry and ionisation guidance, plus ChEBI’s chemical classification. No source passages, exercises, or diagrams were copied. The cover is an original AI-generated conceptual illustration, not a chemical model.
Original text, organization, metadata, and generated cover are offered under CC0 1.0 to the extent applicable rights exist. This dedication does not cover source materials or anyone else’s rights. This is an independent study resource, not affiliated with or endorsed by EMBL-EBI or any course or examination provider.
Κάρτες σε αυτήν τη δέσμη
Κάρτα 1
Ερώτηση
When a card asks for an amino acid’s side-chain charge, which charges should you leave out?
Απάντηση
The backbone amino and carboxyl groups, including peptide termini. Count only the R group’s charge.
Κάρτα 2
Ερώτηση
Can an uncharged amino-acid side chain still be polar?
Απάντηση
Yes. Uneven electron distribution can make a group polar without giving it a net charge; a hydroxyl group is an example.
Κάρτα 3
Ερώτηση
Are ‘aromatic,’ ‘polar,’ and ‘basic’ mutually exclusive amino-acid labels?
Απάντηση
No. They describe different features. A ring can be aromatic while another feature makes the side chain polar or basic. Group labels are a study convention, not an exhaustive chemical description.
Κάρτα 4
Ερώτηση
Alanine side chain → polarity group?
Απάντηση
Nonpolar. Its methyl group has no polar functional group.
Κάρτα 5
Ερώτηση
Serine side chain at pH 7 → polarity/charge group?
Απάντηση
Polar, predominantly uncharged. It contains a hydroxyl group.
Κάρτα 6
Ερώτηση
Aspartate side chain at pH 7 → acid/base group and predominant charge?
Απάντηση
Acidic; −1. The side-chain carboxyl group is predominantly deprotonated under the usual aqueous reference conditions.
Κάρτα 7
Ερώτηση
Valine side chain → polarity group?
Απάντηση
Nonpolar. It is a branched hydrocarbon side chain.
Κάρτα 8
Ερώτηση
Glutamine side chain at pH 7 → polarity/charge group?
Απάντηση
Polar, uncharged. Its amide group does not behave like glutamate’s carboxylate.
Κάρτα 9
Ερώτηση
Lysine side chain at pH 7 → acid/base group and predominant charge?
Απάντηση
Basic; +1. Its terminal side-chain amino group is predominantly protonated under the usual aqueous reference conditions.
Κάρτα 10
Ερώτηση
Phenylalanine side chain → polarity group?
Απάντηση
Nonpolar. Its benzyl group contains an aromatic ring.
Κάρτα 11
Ερώτηση
Glycine → polarity group in this deck’s convention?
Απάντηση
Nonpolar. Its R group is just hydrogen; the grouping does not imply a large hydrophobic side chain.
Κάρτα 12
Ερώτηση
Threonine side chain at pH 7 → polarity/charge group?
Απάντηση
Polar, predominantly uncharged. Its hydroxyl group contributes polarity despite the methyl group beside it.
Κάρτα 13
Ερώτηση
Glutamate side chain at pH 7 → acid/base group and predominant charge?
Απάντηση
Acidic; −1. Its side-chain carboxyl group is predominantly deprotonated under the usual aqueous reference conditions.
Κάρτα 14
Ερώτηση
Leucine side chain → polarity group?
Απάντηση
Nonpolar. It is a branched hydrocarbon side chain.
Κάρτα 15
Ερώτηση
Cysteine at pH 7 → group in this deck’s convention?
Απάντηση
Polar, predominantly uncharged. The side-chain thiol is usually mostly protonated. Cysteine can also behave hydrophobically, so classification schemes differ.
Κάρτα 16
Ερώτηση
Arginine side chain at pH 7 → acid/base group and predominant charge?
Απάντηση
Basic; +1. The guanidinium group is predominantly protonated under the usual aqueous reference conditions.
Κάρτα 17
Ερώτηση
Tryptophan → polarity group in this deck’s convention?
Απάντηση
Nonpolar overall, with a polar feature. Its large aromatic indole group is hydrophobic, but its N–H can donate a hydrogen bond.
Κάρτα 18
Ερώτηση
Proline → polarity group in this deck’s convention?
Απάντηση
Nonpolar. Its side chain also closes a ring with the backbone nitrogen, restricting backbone motion.
Κάρτα 19
Ερώτηση
Asparagine side chain at pH 7 → polarity/charge group?
Απάντηση
Polar, uncharged. Its amide group is distinct from aspartate’s carboxylate.
Κάρτα 20
Ερώτηση
Isoleucine side chain → polarity group?
Απάντηση
Nonpolar. It is a branched hydrocarbon side chain.
Κάρτα 21
Ερώτηση
Histidine → acid/base family?
Απάντηση
Basic. Its imidazole can accept a proton. ‘Basic’ does not mean mostly +1 at pH 7: with a side-chain pKa of 6.0, most molecules have a neutral side chain.
Κάρτα 22
Ερώτηση
Tyrosine at pH 7 → group in this deck’s convention?
Απάντηση
Polar, predominantly uncharged. Its phenolic hydroxyl adds polarity to an aromatic, partly hydrophobic side chain; other schemes group it with the aromatics.
Κάρτα 23
Ερώτηση
Methionine side chain → polarity group?
Απάντηση
Nonpolar overall. Its sulfur is part of a thioether, not a thiol.
Κάρτα 24
Ερώτηση
Which standard amino acid has hydrogen as its R group and no chiral alpha carbon?
Απάντηση
Glycine. Its small R group also permits more backbone conformations than most residues.
Κάρτα 25
Ερώτηση
Which two standard amino acids have side-chain amide groups?
Απάντηση
Asparagine and glutamine. Their amides are polar and uncharged at pH 7.
Κάρτα 26
Ερώτηση
For a single ionizable side-chain group, what does pH below its pKa favor?
Απάντηση
The protonated form. Whether that form is neutral or positive depends on the group.
Κάρτα 27
Ερώτηση
Which two standard amino acids have aliphatic alcohol side chains?
Απάντηση
Serine and threonine. Tyrosine’s hydroxyl is phenolic, attached directly to an aromatic ring.
Κάρτα 28
Ερώτηση
Which standard amino acid supplies the side-chain sulfur atoms of a protein disulfide bond?
Απάντηση
Cysteine. Oxidation of two cysteine thiols can produce a covalent S–S link.
Κάρτα 29
Ερώτηση
Which three standard amino acids are conventionally called the branched-chain amino acids?
Απάντηση
Valine, leucine, and isoleucine. All three have nonpolar hydrocarbon side chains.
Κάρτα 30
Ερώτηση
Which two standard amino acids usually have negatively charged side-chain carboxylates at pH 7?
Απάντηση
Aspartate and glutamate.
Κάρτα 31
Ερώτηση
Which standard amino acid closes its side chain back onto the backbone nitrogen?
Απάντηση
Proline. The ring restricts backbone flexibility; an internal proline residue also lacks the usual peptide N–H donor.
Κάρτα 32
Ερώτηση
For a single ionizable side-chain group, what is the protonated:deprotonated ratio at pH = pKa?
Απάντηση
1:1. Half is protonated and half is deprotonated in the simple two-state acid–base model.
Κάρτα 33
Ερώτηση
Which three standard amino acids form the usual ‘aromatic amino acids’ study group?
Απάντηση
Phenylalanine, tyrosine, and tryptophan. Histidine’s imidazole is chemically aromatic too, but introductory grouping tables usually place histidine with the basic amino acids.
Κάρτα 34
Ερώτηση
Cysteine versus methionine: which side chain can make the usual protein disulfide link?
Απάντηση
Cysteine. It has a thiol; methionine has a thioether and does not form this cysteine-type disulfide link.
Κάρτα 35
Ερώτηση
For a single ionizable side-chain group, what does pH above its pKa favor?
Απάντηση
The deprotonated form. For a carboxyl group this is negative; for a protonated amine losing its proton, it is neutral.
Κάρτα 36
Ερώτηση
At pH 7, why is aspartate usually charged while asparagine is uncharged?
Απάντηση
Aspartate has a side-chain carboxylate (−1); asparagine has a neutral amide. Similar names do not mean the same functional group.
Κάρτα 37
Ερώτηση
Which standard amino acid has an imidazole side chain that can switch between neutral and +1 forms?
Απάντηση
Histidine. Its protonation depends on pH and its local pKa.
Κάρτα 38
Ερώτηση
Which standard amino acid combines a phenyl ring with a phenolic hydroxyl group?
Απάντηση
Tyrosine. The hydroxyl makes this aromatic side chain more polar than phenylalanine’s.
Κάρτα 39
Ερώτηση
Glycine versus proline: which generally allows more backbone conformations?
Απάντηση
Glycine. Its tiny R group imposes little steric restriction; proline’s ring constrains the backbone.
Κάρτα 40
Ερώτηση
Why can tryptophan donate a side-chain hydrogen bond despite being grouped as nonpolar overall?
Απάντηση
Its indole N–H can donate a hydrogen bond. A large hydrophobic group can still contain a polar site.
Κάρτα 41
Ερώτηση
Must every nonpolar side chain lie inside a water-soluble globular protein?
Απάντηση
No. Burial of nonpolar groups is a tendency, not a rule for every residue. Protein shape and local interactions also matter.
Κάρτα 42
Ερώτηση
Assume histidine’s side-chain pKa is 6.0. At pH 7.0, is its predominant side-chain charge 0 or +1?
Απάντηση
0
pH is one unit above pKa, so neutral:protonated is 10:1; about 9% is +1. This is a supplied-pKa model, not a universal protein value.
Κάρτα 43
Ερώτηση
Assume cysteine’s thiol pKa is 8.3. At pH 7.0, which form predominates: neutral thiol or negative thiolate?
Απάντηση
Neutral thiol. pH is below pKa, so the protonated S–H form predominates.
Κάρτα 44
Ερώτηση
At pH 7, which has a predominantly −1 side chain: glutamate or glutamine?
Απάντηση
Glutamate. Glutamine’s side-chain amide is neutral.
Κάρτα 45
Ερώτηση
Assume tyrosine’s phenolic pKa is 10.1. At pH 7.0, is its side chain predominantly neutral or negative?
Απάντηση
Neutral. The phenolic hydroxyl is mostly protonated because pH is below pKa.
Κάρτα 46
Ερώτηση
Assume lysine’s side-chain pKa is 10.5. At pH 7.0, is its side chain predominantly neutral or +1?
Απάντηση
+1. pH is below pKa, favoring the protonated amino group.
Κάρτα 47
Ερώτηση
Assume aspartate’s side-chain pKa is 3.9. At pH 7.0, is its side chain predominantly neutral or −1?
Απάντηση
−1. pH is above pKa, favoring the deprotonated carboxylate.
Κάρτα 48
Ερώτηση
Can a standard aqueous pKa value determine a buried protein side chain’s charge with certainty?
Απάντηση
No. Nearby charges, solvent exposure, and other local interactions can shift pKa. Use a value appropriate to that site when it is known.
Κάρτα 49
Ερώτηση
With a histidine side-chain pKa of 6.0, does the label ‘basic amino acid’ imply a predominantly +1 side chain at pH 7?
Απάντηση
No. ‘Basic’ describes proton-accepting chemistry; the predominant charge at a stated pH follows the pKa. Here the side chain is mostly neutral.
Κάρτα 50
Ερώτηση
Does a predominantly neutral tyrosine side chain at pH 7 make tyrosine nonpolar in this deck’s grouping?
Απάντηση
No. Its hydroxyl is polar even when uncharged. This deck groups tyrosine as polar, uncharged and also recognizes its aromatic character.
Κάρτα 51
Ερώτηση
Does an internal proline residue have the same backbone N–H hydrogen-bond donor as most peptide residues?
Απάντηση
No. Its backbone nitrogen has no attached hydrogen in the peptide chain. This is a backbone consequence of its ring, not a side-chain charge.
Κάρτα 52
Ερώτηση
At pH = pKa, a side chain switches between 0 and +1. Is each individual side chain charged +0.5?
Απάντηση
No. The two forms occur in equal proportions, giving an ensemble-average charge of +0.5. Each form still has charge 0 or +1.
Κάρτα 53
Ερώτηση
Assume cysteine’s thiol pKa is 8.3. At pH 9.3, what is its predominant side-chain charge?
Απάντηση
−1. Deprotonated thiolate predominates; the thiolate:thiol ratio is 10:1 in the simple model.
Κάρτα 54
Ερώτηση
At pH 7, which pair is a plausible side-chain salt bridge: lysine–glutamate or leucine–valine?
Απάντηση
Lysine–glutamate: their usual side-chain charges are +1 and −1. A salt bridge still requires suitable proximity and environment.
Κάρτα 55
Ερώτηση
A histidine site has a measured side-chain pKa of 8.0. At pH 7.0, which side-chain form predominates?
Απάντηση
The protonated +1 form. pH is below this site’s pKa; use the supplied local value rather than a generic histidine value.
Κάρτα 56
Ερώτηση
Phenylalanine versus tyrosine: which has the side-chain hydroxyl that adds polarity?
Απάντηση
Tyrosine. Phenylalanine lacks that hydroxyl; both contain an aromatic ring.
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Amino Acid Side-Chain Properties Flashcards: Polarity & Charge
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