Please use this identifier to cite or link to this item: https://scholarbank.nus.edu.sg/handle/10635/216496
Title: STRUCTURE, FUNCTION AND FOLDING OF THREE FINGER TOXINS
Authors: PUDUR VENKATESWARULU DILEEP KUMAR
Keywords: Three finger toxins, NMR, Solid phase peptide synthesis, Structure, Cysteine rich peptides, oxidative refolding
Issue Date: 19-Aug-2021
Citation: PUDUR VENKATESWARULU DILEEP KUMAR (2021-08-19). STRUCTURE, FUNCTION AND FOLDING OF THREE FINGER TOXINS. ScholarBank@NUS Repository.
Abstract: Three finger toxins (3FTxs) are one of the family of peptides in snake venom. Despite the common protein fold, they exhibit diverse pharmacological activities. Our group characterized Oh9-1, a neurotoxin from venom of Ophiophagus hannah. Although Oh9-1 binds to the same acetylcholine binding pocket as the -neurotoxins, it lacks key functional residues. In this thesis, I describe the three-dimensional structure of Oh9-1 by NMR. Unlike the above class of postsynaptic neurotoxins, we identified a 3FTx that acts at the presynaptic site. This toxin, isolated from venom of Micrurus fulvius, was named as “presynapsin”. Systemic sequence investigation was done to understand the functional diversity. Finally, I attempted to determine the structural elements that assist in the native disulphide pairings which help in maintaining the canonical 3FTx-fold. I have evaluated the role of primary sequence and secondary structures to define the molecular determinants that govern the disulphide pairing.
URI: https://scholarbank.nus.edu.sg/handle/10635/216496
Appears in Collections:Ph.D Theses (Open)

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