Bibliographic Details
| Title: |
Weak Acid-Base Interactions of Histidine and Cysteine Affect the Charge States, Tertiary Structure, and Zn(II)-Binding of Heptapeptides. |
| Authors: |
Lin, Yu-Fu1 (AUTHOR), Yousef, Enas N.1 (AUTHOR), Torres, Efren1 (AUTHOR), Truong, Linh1 (AUTHOR), Zahnow, James M.1 (AUTHOR), Donald, Cole B.1 (AUTHOR), Qin, Ying1 (AUTHOR), Angel, Laurence A.1 (AUTHOR) Laurence.Angel@tamuc.edu |
| Source: |
Journal of the American Society for Mass Spectrometry. Oct2019, Vol. 30 Issue 10, p2068-2081. 14p. |
| Subjects: |
Histidine, Tertiary structure, Zinc-finger proteins, Cysteine, Amino acid sequence, Zinc ions |
| Abstract: |
Zinc fingers are proteins that are characterized by the coordination of zinc ions by an amino acid sequence that commonly contains two histidines and two cysteines (2His-2Cys motif). Investigations of oligopeptides that contain the 2His-2Cys motif, e.g., acetyl-His1-Cys2-Gly3-Pro4-Tyr5-His6-Cys7, have discovered they exhibit pH-dependent Zn(II) chelation and have redox activities with Cu(I/II), forming a variety of metal complexes. To further understand how these 2His-2Cys oligopeptides bind these metal ions, we have undertaken a series of ion mobility–mass spectrometry and B3LYP/LanL2DZ computational studies of structurally related heptapeptides. Starting with the sequence above, we have modified the potential His, Cys, or C-terminus binding sites and report how these changes in primary structure affect the oligopeptides positive and negative charge states, conformational structure, collision-induced breakdown energies, and how effectively Zn(II) binds to these sequences. The results show evidence that the weak acid-base properties of Cys-His are intrinsically linked and can result in an intramolecular salt-bridged network that affects the oligopeptide properties. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |