Which side chain contains a carboxamide group? O R1 O R2 R3 O R4 Question 3 At pH=7, the net charge on this peptide is.... 0-2 O-1 00 +1
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- N- HO sta on e yor current pH the peptide? Explain your yor a) Based the charge state shown, what is a possible vahe amswer wsi'ng 2-3 sentences. Show the qull pH ramge yor this protonation otate 6) Hypo thesize a oingle amino acid substitution Cmutation) that wonld make Your amswer must include the which residue this lic You. peptide more hydrophi you would mutate and what new re sidue would take its place Include a 1 sentence explanation g your reasoning yourWhich of the following is incorrect about the peptide Arg-Asp-Cys-Tyr-Gln-Arg-Glu? O a. Its estimated MW is 770 Da b. None; all the other choices are correct OC. At pH 7, it has a net charge of zero O d. At pH 7, it has six charged groupsWrite the chemical structure of peptide containing the following amino acid PRO-SER-GLY-LEU I NEED IT ASAP PLEASE
- A peptide has the sequence Glu–His–Trp–Ser–Gly–Leu–Arg–Pro–GlyGlu–His–Trp–Ser–Gly–Leu–Arg–Pro–Gly The p?apKa values for the peptide’s side chains, terminal amino groups, and carboxyl groups are provided in the table. Amino acid Amino pKa Carboxyl pKa Side‑chain pKa glutamate 9.609.60 2.342.34 4.254.25 histidine 9.179.17 1.821.82 6.006.00 tryptophan 9.399.39 2.382.38 serine 9.159.15 2.212.21 glycine 9.609.60 2.342.34 leucine 9.609.60 2.362.36 arginine 9.049.04 2.172.17 12.4812.48 proline 10.9610.96 1.991.99 Calculate the net charge of the molecule at pH 3.27. Draw palmitic acid, identify a, B and w carbons, write out its short hand notation 28. Examine the peptide sequence below and then answer the questions: H2N-Gly- Leu- Ala-Asp-Cys-Asn-Trp-lle-Ser-Phe-Lys-Cys-Arg-Pro-coOH a. Circle the asparagine residue b. A possible intramolecular disulfide bond can be formed within this peptide between which two residues? c. Circle one residue which has a positively charged side chain under pH 7.4 d. Circle one residue which has a negatively charged side chain under pH 7.4 e. Circle the residue which can be phosphorylated4. a. Give the full names of the amino acids in this peptide. НзN — CH—С-N—CH— С-N—CH—С—О ČH3 H ČH,OH H. CH2 -ОН b. Calculate the isoelectric point (pl) of a peptide with sequence SNARE. Show your work in a table, giving the pKa values of the ionizable groups, pH, and charges. Step marks are counted. Don't need to write “protonated" or “deprotonated".
- Draw peptide Pro-Ser-Ala-Phe-Glu as you would see it at pH 7. Include stereochemistry.Given the polypeptide chain below: Ala-Arg-Val-His-Asp-Gln 1. What kind of polypeptide is it? 2. How many peptide bonds are there?Relatively hydrophobic proteins will require higher amounts of (NH4)2S04 to precipitate.
- Given the following peptide, answer following questions 1-5: CO CH2 O || CH2 O H3N-CH-C-NH- CH-c-OCH3 | 1. Is this a dipeptide or tripeptide? 2. How many amino acid components/residues are there? 3. Name these amino acids. 4. What kind of bond links these amino acids? 5. The above structure represents the major ingredient in some commercial product(s). Identify the name of this major ingredient or the commercial product(s). Given that the hemagglutininin protein in influenza virus contains a remarkably long a-helix with 53 residues, answer questions 6-7. 6. How long is this a-helix (in nm)? Show all calculations. 7. How many turns does this helix have? Show all calculations.N - Leucine - Arginine - Proline - Aspartic acid - Methionine - C write the structure classify the type of peptide number of peptide bonds IUPAC name 3 - and 1 letter abbrevation. Solve for pI Determine the charge @ pH = 1, 3, 5, 10 & 13A peptide has the sequence Glu-His–Trp–Ser-Gly–Leu-Arg-Pro–Gly The pK, values for the peptide's side chains, terminal amino groups, and carboxyl groups are provided in the table. Amino acid Amino pKa Carboxyl pKa Side-chain pKa glutamate 9.60 2.34 4.25 histidine 9.17 1.82 6.00 tryptophan 9.39 2.38 serine 9.15 2.21 glycine 9.60 2.34 leucine 9.60 2.36 arginine 9.04 2.17 12.48 proline 10.96 1.99 Calculate the net charge of the molecule at pH 3. net charge at pH 3: