Which of the following peptides will likely adopt an alpha helix? H-I-R-E-F A-D-L-E-E A-D-E-L-E C-V-D-E-F
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Which of the following peptides will likely adopt an alpha helix?
- H-I-R-E-F
- A-D-L-E-E
- A-D-E-L-E
- C-V-D-E-F
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- Which of the following peptides will likely adopt an alpha helix structure? (idk) A-D-I-E-L-Y-F-H-I-C-V-D A-R-E-P-H-Y-D-P-C-Q-S A-D-I-E-L-Y-M-H-I-C-V-D A-R-E-V-H-Y-I-D-C-Q-FWhich of the following peptides will likely form an irregular structure? A-D-I-E-L-Y-F-H-I-C-V-D-E A-R-E-G-H-Y-D-G-C-Q-S-G A-R-E-V-H-Y-D-I-C-Q-S-F A-R-E-F-C-Y-D-I-C-Q-S-PDraw the structure of this peptide: N-Met-His-Tyr-Leu-Asp-Ser-Arg-Leu-C
- I-D-E-L-Y-S-Q-V-C-S-H-L-D-T-V-R The amino acid sequence above forms an alpha helix. Place the amino acids on the wheel given below. L1 represents Leu.Which of the following best describes how the secondary structure of a protein is formed? A B с D O=U a-helix H O=C N-H R-C-H C=0 H-N H-C-R O=C N-H R-C-H C=O H-N O-C N-H R-C-H C=O H-N N-H 0= H-C-R H-N C=O R-C-4 N-H O=C H-C-R 4-1 Ç=O R-C-H N-H 0=C H-C-R (=O R-C-H B-pleated sheet ionic bonds between the R groups of the polypeptide amino acids -Uh hydrogen bonds between the carboxyl and amino groups of non-adjacent amino acids covalent bonds between the carboxyl and amino groups of adjacent amino acids hydrogen bonds between the R groups of the polypeptide amino acidsA helical wheel is a two-dimensional representation of a helix, a view along its central axis. Label the blanks on the helical wheel diagram to show the distribution of amino acid residues in a helical segment with the sequence -Val-Asp-Arg-Val-Phe-Ser-Asn-Val-Cys-Thr-His-Leu-Lys–Thr-Leu-Gln-Asp-Lys- 1 Answer Bank H L D K R F T K S T
- For the three peptides below, label whether they would form an amphiphilic beta-strand, amphiphilic helix, or nothing. Explain why. Part a) S-V-K-I-Q-M-R-A-D-L Part b) A-L-E-H-M-F-R-Y-L-A-K Part c) A-L-A-I-W-F-P-D-R-K-EThe sequence of a peptide is given below. Ala-gly-val-leu-trp-lys-ser-phe-arg-proWhich peptide bond(s) are cleaved by chymotrypsin(c=0 OH CH2 H CH2 H CH, H. H-Nt CH' CH N. CH CH CH' H CH CH3 H CH H CH2 CH, CH, CH2 CH2 CH3 CH2 CH2 * NH3
- Write the structure of each of the following peptides. Start with the N-terminal and the COO- on the right end. His-trp-cys Gly-leu-ser Arg-ile-val His-arg-lysConsider the following two peptides: I. N-Pro-Pro - Glu - Glu - Tyr - His - Cys - Ala - Glu - Gln - Lys - Leu - Ser - Ser - Phe-Leu- Thr - C II. N-Pro-Pro - Lys - Arg - Gly - Tyr - His - Gly - Glu - Asp - Glu - Asp - Glu - Ser - Gly-Phe- Tyr-C Give three reasons why_peptide I is more likely to form an alpha helix in aqueous solution at pH 7.0. Your reasons may include why_peptide Il is less likely to form an alpha helixAttempt 8 Consider the hypothetical serine protease in the image, which shows the specificity pockets. The S1 pocket has a glutamic acid in the bottom, the S2 pocket is small and R3 H. R1 hydrophobic, and the S1' pocket is deep and hydrophobic. Suggest a 3-amino acid sequence that this protease would cleave and indicate between which sites the peptide bond R would be broken. S2 Si Which sequence would this protease cleave? O Leu-Val-Arg Arg-Val-Leu Val-Leu-Arg Val-Arg-Leu Leu-Arg-Val Arg-Leu-Val W Ma tv 894