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- A sample mixture consists of three proteins with the following properties: Protein A MW (kDa) 200 Amino acid composition 40% nonpolar, 60% polar B 45 20% nonpolar, 80% polar C 98 85% nonpolar, 15% polar IpH 9 3 5 1. If the mixture is subjected to ammonium sulfate precipitation, which protein will precipitate out first? [Select] 2. If the mixture is subjected to isoelectric focusing, which protein will stop moving nearest to the positive electrode? [Select] 3. If the mixture is subjected to cation-exchange chromatography using a buffer at pH 7, which protein will bind to the resin? [Select] 4. If the mixture is subjected to SDS-PAGE, which protein will be at the bottommost portion of the gel? [Select] * Previous NexA mixture of Aspartic Acid (pl 2.98), Histidine (pl 7.59), Lysine (pl 9.74), Phenylalanine (pl 5.48) and Threonine (pl 6.53) are separated by cation exchange chromatography. What is the order of elution of these amino acids if you use gradient buffer system from pH 10 to pH 2. v First 1. Aspartic Acid v Second 2. Histidine v Third 3. Lysine 4. Phenylalanine v Fourth 5. Threonine v Fifth 6. No separationLoop regions play important roles in the secondary structure of protein. Define loop region and give three (3) of the roles
- In the molecule of oligomeric protein there are 19 lysine residues. 12 of them may be easily acetylated with anhydrides of dicarbon acids (it react with NH2-groups). The acetylation of extra two residues of lysine will dissociate the protein to the subunits. The rest 5 lysine residues may be modified only after denaturation of the protein. Suggest, how many lysine residues are: a) on a surface of protein globule; b) inside globule: c) in a site which is responsible for the contact within subunits27. 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 phosphorylatedA mixture of Asparagine (pl 5.41), Aspartic Acid (pl 2.98), Histidine (pl 7.59), Lysine (pl 9.74) and Threonine (pl 6.53) are separated by cation exchange chromatography. What is the order of elution of these amino acids if you use gradient buffer system from pH 10 to pH 2: v First 1. Asparagine v Second 2. Aspartic Acid 3. Histidine v Third 4. Lysine v Fourth 5. Threonine v Fifth 6. No separation
- This cartoon represents the quaternary structure of proteins and each color of the different shape represents a different subunit. 1. How many N-terminus are there in this cartoon?An oligopeptide has the following amino acid sequence: NH2-Ala-Glu–Leu–Trp–Tyr-Ser–Gly–Lys–Leu-Ala–Arg-Ala-Phe-Ile-Pro–Gly-COOH a) Estimate the net electric charge of the molecule at pH 8.0 and pH 11.0. b) If the above peptide is passed through a cation exchange chromatographic column (that is, the matrix of the column has negative charges) stabilized at pH 8.0, would you expect it to be retained on the column? c) Indicates the number of fragments, and the sequence of each of them, that would be obtained when treating the peptide in question with: i) trypsin, ii) chymotrypsin.A cytosolic protein has an important alpha amino group. The pKa of this group is approximately 8 when exposed to water outside of a protein. 1. What would happen to the pKa if this group was instead buried in the hydrophobic interior of the protein? Explain. 2. Let’s say in the hydrophobic interior of the protein, the group forms an ionic bond with a carboxylate group of the side chain of a charged Asparagine residue. How would the pKa of this alpha amino group compare with the pKa of the alpha amino group in the hydrophobic interior of the protein without a nearby Asparagine residue to form this ionic bond? Explain.
- Explain what the meaning of these distances is (e.g., from where to where?)Crystal structure of human monocyte chemotactic protein-2Which intermolecular forces are important in acetic acid, CH3 –(C=0)-oh? A particular amino acid contains a- CHNH3+ group. Is this amino acid more likely to be found on the inside or the outside of the folded protein? Briefly explain. The addition of ethanol, CH3CHOH, t an aqueous solution lowers the surface tension of the solution. Predict whether adding ethanol to an aqueous protein solution will tend to stabilize or unfold the protein. Briefly explain.Porcine dynorphin is a neuropeptide having 17 amino acid residues. Its structure is shown below. Tyr-Gly-Gly-Phe-Leu-Arg-Arg-Ile-Arg-Pro-Lys-Leu-Lys-Trp-Asp-Asn-Gln 8. How does trypsin catalyze the hydrolysis of peptides? You can answer this question by identifying the amino acids involved and whether the hydrolysis is at their amino side or the carboxyl side or if particular amino acids end up at the N-teminal end or at the C-terminal end. 9. List down the different fragments that would result if dynorphin were cleaved by trypsin. 10. How does chymotrypsin catalyze the hydrolysis of peptides? You can answer this question by identifying the amino acids involved and whether the hydrolysis is at their amino side or the carboxyl side or if particular amino acids end up at the N-teminal end or at the C- terminal end. 11. List down the different fragments that would result if dynorphin were cleaved by chymotrypsin. 12. Cyanogen bromide is a chemical reagent which also cleaves peptide bonds.…