Tachyplesin: Difference between revisions
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Evidences suggest that TPI has ability to permeabilize the cell membranes of pathogens.<ref name=Laederach>PMID:12369825</ref>. Also, LPS and DNA being the potential biological targets of the peptide, its antimicrobial activity might be exploited. Eyeing the potential of TPI, it has been insetred successfully in genome of ''Ornithogalum dubium'' and ''Ornithogalum thyrsoides''. These ornamentals plants were originally sensitive to soft rot erwinias (SREs) and insertion of TPI in the plants has successfully protected them without affecting their normal physiology. | Evidences suggest that TPI has ability to permeabilize the cell membranes of pathogens.<ref name=Laederach>PMID:12369825</ref>. Also, LPS and DNA being the potential biological targets of the peptide, its antimicrobial activity might be exploited. Eyeing the potential of TPI, it has been insetred successfully in genome of ''Ornithogalum dubium'' and ''Ornithogalum thyrsoides''. These ornamentals plants were originally sensitive to soft rot erwinias (SREs) and insertion of TPI in the plants has successfully protected them without affecting their normal physiology. | ||
== A | == A Cys Deleted Linear Analog == | ||
<scene name='67/671725/Cdt/1'>CDT</scene> is a linear mutant lacking the cysteines and therfor also lacking the disulfide bonds (NH₂-Lys-Trp-Phe-Arg-Val-Tyr-Arg-Gly-Ile-Tyr-Arg-Arg-Arg-CONH₂). | <scene name='67/671725/Cdt/1'>CDT</scene> is a linear mutant lacking the cysteines and therfor also lacking the disulfide bonds (NH₂-Lys-Trp-Phe-Arg-Val-Tyr-Arg-Gly-Ile-Tyr-Arg-Arg-Arg-CONH₂). It contains a broad spectrum of bactericidal activity with a reduced hemolytic property that stems from selective interactions with the negatively charged lipids including LPS. | ||
<ref name=Saravanan>PMID:22464970</ref> | |||
== Possible Function as antitumor peptide == | == Possible Function as antitumor peptide == | ||
The cationic nature of tachyplesin allows it to interact with anionic phospholipids present in the bacterial membrane and thereby disrupt membrane function. | The cationic nature of tachyplesin allows it to interact with anionic phospholipids present in the bacterial membrane and thereby disrupt membrane function. | ||
The structural nature of tachyplesin suggested that it might also posses antitumor properties. Since it can interact with the membrance of prokaryotic cell, it is likely that TP I can also interact with the mitochondrial membrane of eukaryotic cells due to the structure similarity of these membranes because mitochondria are widely belived to have evolved from prokaryotic cells that have established a symbiotic relationship with the promitive eukaryotic cell. | The structural nature of tachyplesin suggested that it might also posses antitumor properties. Since it can interact with the membrance of prokaryotic cell, it is likely that TP I can also interact with the mitochondrial membrane of eukaryotic cells due to the structure similarity of these membranes because mitochondria are widely belived to have evolved from prokaryotic cells that have established a symbiotic relationship with the promitive eukaryotic cell. | ||
Revision as of 12:09, 30 December 2014
Introduction
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References
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Shulamit Idzikowski, Janak Raj Joshi, Michal Harel, Angel Herraez, Alexander Berchansky, Jaime Prilusky, Joel L. Sussman