Tachyplesin: Difference between revisions

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The sequence adapts an antiparallel β-sheet (hairpin) conformation in solution, with a <scene name='67/671725/Beta_turn_tp-1/2'>β-turn</scene> for the centrally located residues <scene name='67/671725/Tyrargglyile/3'>Tyr-Arg-Gly-Ile</scene>, stabilized by two cross-strand <scene name='67/671725/Disulfide_bonds/4'> disulfide bonds </scene>  between Cys³-Cys¹⁶ and Cys⁷-Cys¹²<ref name=Saravanan>PMID:22464970</ref><ref name=Nakamura>Nakamura, Takanori, et al. "Tachyplesin, a class of antimicrobial peptide from the hemocytes of the horseshoe crab (''Tachypleus tridentatus''). Isolation and chemical structure." Journal of Biological Chemistry 263.32 (1988): 16709-16713</ref>, and [http://en.wikipedia.org/wiki/Protein_primary_structure C-terminus amidation].  In addition there are H-bonds and aromatic rings stacking interactions which helps stabilize the hairpin loop structure of the peptide.  
The sequence adapts an antiparallel β-sheet (hairpin) conformation in solution, with a <scene name='67/671725/Beta_turn_tp-1/2'>β-turn</scene> for the centrally located residues <scene name='67/671725/Tyrargglyile/3'>Tyr-Arg-Gly-Ile</scene>, stabilized by two cross-strand <scene name='67/671725/Disulfide_bonds/4'> disulfide bonds </scene>  between Cys³-Cys¹⁶ and Cys⁷-Cys¹²<ref name=Saravanan>PMID:22464970</ref><ref name=Nakamura>Nakamura, Takanori, et al. "Tachyplesin, a class of antimicrobial peptide from the hemocytes of the horseshoe crab (''Tachypleus tridentatus''). Isolation and chemical structure." Journal of Biological Chemistry 263.32 (1988): 16709-16713</ref>, and [http://en.wikipedia.org/wiki/Protein_primary_structure C-terminus amidation].  In addition there are H-bonds and aromatic rings stacking interactions which helps stabilize the hairpin loop structure of the peptide.  
   
   
TP-I undergoes a conformational change in the <scene name='67/671725/Tp_i_in_the_presence_of_lps/1'>presence of LPS </scene>. The backbone of the polypeptide becomes <scene name='67/671725/Conformation_change/8'>more rigid and twisted in the presence of LPS, than in the presence of water</scene>, making it more stable.
[http://en.wikipedia.org/wiki/Nuclear_magnetic_resonance NMR] studies have shown that TP-I undergoes a conformational change in <scene name='67/671725/Tp_i_in_the_presence_of_lps/1'>presence of LPS </scene><scene name='67/671725/Conformation_change/8'>making it more rigid and twisted, than in the presence of water</scene><ref name=Kushibiki>PMID:24389234</ref>. Specifically, residues located in N and C termini of TP-I are involved in binding to LPS. In addition fluroscence studies have shown that <scene name='67/671725/Conformation_change/10'>Trp residue</scene> in the hydrofobic environment of LPS. Besides this, β-strands of TP-I seems to extend and become more rigid thus stabilizing the structure of peptide. This change in structure of TP-I in presence of LPS seems to be crucial for its activity, since rearrangement of TP-I makes it more amphiphilic to negatively charged membrane of bacteria and fungus.
The two β-strands slightly extends when TP-I binds to LPS and stabilize the whole structure of TP-I as a result.  
Fluorescence studies indicate that the <scene name='67/671725/Conformation_change/10'>Trp residue</scene> incorporated into the hydrophobic environment of LPS. [http://en.wikipedia.org/wiki/Nuclear_magnetic_resonance NMR] studies suggest that residues located in the N and C termini of TP-I are involved in the binding to LPS and that phosphate groups of LPS are in close proximity to TP-I. <ref name=Kushibiki>PMID:24389234</ref>
   
   
Along with the requirement for β-hairpin conformation, there is a second requirement for activity and it is the ability to rearrange to a more amphiphilic conformation upon membrane association.
In the wild type TP-I,<scene name='67/671725/Conformation_change/9'> Arg 5 and Arg 14</scene>, provides this by acting as hinges.<ref name=Laederach>PMID:12369825</ref>
In the wild type TP-I,<scene name='67/671725/Conformation_change/9'> Arg 5 and Arg 14</scene>, provides this by acting as hinges.<ref name=Laederach>PMID:12369825</ref>



Revision as of 16:55, 23 January 2015

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References