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- PEPTIDE #1: Pro-Phe-Thr-Cys PEPTIDE #2: Gly-Tyr-Ser-Asp Calculate the pI of both peptides. Which is more acidic and why? Which one is more hydrophobic? Which peptide sequence (#1 or #2) would be more likely situated on the surface of the protein?Calculate the pI for the following tri-peptide: Glu-Arg-LysPeptide A: AFEQHSR Calculate the isoelectric point of Peptide A using the pKa values in Table 4-1 of Voet, Voet and Pratt. Assume that the pKa values for the N-terminal amino group and C- terminal carboxyl groups are 8.0 and 3.5, as previously discussed in class. 3.785 5.055 7.02 10.24 3.50
- 1CFD CALCIUM-FREE CALMODULIN How long is the protein’s primary sequence?Does this protein have any secondary, tertiary and/or quaternary structures present?Are there any molecular additions to this protein that are not amino acGiven the following Peptide: Q6 *H;N-Phe-Asp-Ala-Arg-Gy-His-Arg-Asp-Glu-His-Tyr-CO 6a. What is the peptide's net charge at pH 2.0, pH 6.0, pH 7.4, and pH 10.2? (show work) 6b. What is the approximate isoelectric point of this peptide?The peptide cys-leu-glu-ala-cys-lys is at pH 7 in oxidizing conditions. Part a) Draw the peptide's titration curve. Part b) What would the pI of the peptide be around?
- GT 3 A. Write the structure of the pentapeptide GLDSC. B. What is the complete name of this pentapeptide? Show a tertiary structure of ACGGC after a disulfide bond forms. A sample of an unknown peptide was divided into two aliquots. One aliquot was treated with trypsin; the other was treated with cyanogen bromide. Given the following sequences (N-terminal to C- terminal) of the resulting fragments, deduce the sequence of the original peptide. Trypsin treatment Asn-Thr-Trp-Met-lle-Lys Gly-Tyr-Met-Gln-Phe Val-Leu-Gly-Met-Ser-Arg Cyanogen bromide treatment Gln-Phe Val-Leu-Gly-Met lle-Lys-Gly-Tyr-Met Ser-Arg-Asn-Thr-Trp-Metpeptide Lys-Glu-Trp answer the following questions: Draw the structure of this peptide when all the ionizable groups are fully protonated. How many ionizable groups does this peptide have? Label the pKa for each of the ionizable groups in the structure above. Draw the appropriate titration curve for this peptide on graph paper starting at pH 0 and ending at pH 14. Label the x-axis, y-axis and the pKa Determine the overall net charge of this peptide at each full equivalent point (including 0) where the ionizable group is 100% deprotonated. Determine the pI for this peptide. Determine the average overall net charge of a mixture of this peptide in a solution where pH=8.5.A/B: 3. Amino acid residues and peptide bonds (a) Draw the chemical structure of F, S and H joined by peptide bonds and also connected to neighboring residues as found in a protein. (b) Include all charges as expected at physiological pH (pH = 7.5) () Rank these three amino acid residues by hydrophobicity, pKa, and by nucleophilicity (d) For the central amino acid residue, identify the phi and psi dihedral angles by drawing a curved arrow indicating rotation about the chemical bond. (e) What group(s) eclipse each other if Phi = 0 degrees? Words and Pictures. (f) While Phi = 0 is not well tolerated, Psi = 0 is not uncommon, a so-called “allowed" but not most-favored region of the Ramachandran plot. What group(s) eclipse each other if Psi = 0 degrees and why is this less problematic than the situation created by Phi = 0. Words and Pictures H₂N* Pka: 9.13 H₂C с C._hydrophobicity: 1. phenylalanine (most) 2. Serine 3. Histidinelleast) ده H H. HIN OH I CH₂ CHO pka: 1. Serine (nighest) 2.…
- b. Please draw the structure of the polypeptide: threonine-lysine-glutamine-valine at pH 7.0, and identify the alpha carbons. C. Estimate the isoelectric point of the polypeptide in (b.)?Calculate the pI of the peptide KLMRDSP (pKa = 3.5, 3.9, 9.5, 10.0, 12.5).Consider the peptides Pro-Gin-Val-Phe-His-Asp-Cys and His-Gln-Pro-Cys-Asp-Phe-Val. How do these two peptides differ? (Select all that apply.) The two peptides have different compositions. The two peptides have different isoelectric points. The two peptides have different titration curves. The two peptides differ in amino acid sequence. [References] If you were to have a mythical amino acid based on glutamic acid, but one in which the hydrogen that is attached to the y-carbon were replaced by another amino group, what would be the predominant form of this amino acid at pH 12 if the pK, value were 10 for the unique amino group? (Select all that apply.) Both of the carboxyl groups are deprotonated. The amino acid-carries a negative 2 charge. The amino acid carries a negative 4 charge. The amino groups are in the form -NH". Both of the amino groups are deprotonated.