Author: Wang, Keâ€Ming; Kumar, Senthil; Cheng, Yiâ€Sheng; Venkatagiri, Shripathi; Yang, Aiâ€Hwa; Yeh, Kaiâ€Wun
Title: Characterization of inhibitory mechanism and antifungal activity between groupâ€1 and groupâ€2 phytocystatins from taro (Colocasia esculenta) Cord-id: 2rntyccn Document date: 2008_9_10
ID: 2rntyccn
Snippet: Tarocystatin from Colocasia esculenta, a groupâ€2 phytocystatin, is a defense protein against phytopathogenic nematodes and fungi. It is composed of a highly conserved Nâ€terminal region, which is homological to groupâ€1 cystatin, and a repetitive peptide at the Câ€terminus. The purified recombinant proteins of tarocystatin, such as fullâ€length (FL), Nâ€terminus (Nt) and Câ€terminus (Ct) peptides, were produced and their inhibitory activities against papain as well as their antifungal ef
Document: Tarocystatin from Colocasia esculenta, a groupâ€2 phytocystatin, is a defense protein against phytopathogenic nematodes and fungi. It is composed of a highly conserved Nâ€terminal region, which is homological to groupâ€1 cystatin, and a repetitive peptide at the Câ€terminus. The purified recombinant proteins of tarocystatin, such as fullâ€length (FL), Nâ€terminus (Nt) and Câ€terminus (Ct) peptides, were produced and their inhibitory activities against papain as well as their antifungal effects were investigated. Kinetic analysis revealed that FL peptide exhibited mixed type inhibition (K (ia) = 0.098 μm and K (ib) = 0.252 μm) and Nt peptide showed competitive inhibition (K (i) = 0.057 μm), whereas Ct peptide possessed weak papain activation properties. A shift in the inhibitory pattern from competitive inhibition of Nt peptide alone to mixed type inhibition of FL peptide implied that the Ct peptide has an regulatory effect on the function of FL peptide. Based on the inhibitory kinetics of FL (groupâ€2) and Nt (groupâ€1) peptides on papain activity, an inhibitory mechanism of groupâ€2 phytocystatins and a regulatory mechanism of extended Ct peptide have each been proposed. By contrast, the antifungal activity of Nt peptide appeared to be greater than that of FL peptide, and the Ct peptide showed no effect on antifungal activity, indicating that the antifungal effect is not related to proteinase inhibitory activity. The results are valid for most phytocystatins with respect to the inhibitory mechanism against cysteine proteinase.
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