Tachyplesin: Difference between revisions

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== Structural highlights ==
== Structural highlights ==
Tachyplesine I is a 17-residue peptide containing six cationic residues.
The amino acid sequence of the TPI is NH₂-Lys-Trp-Cys-Phe-Arg-Val-Cys-Tyr-Arg-Gly-Ile-Cys-Tyr-Arg-Arg-Cys-Arg-CONH₂.  
The amino acid sequence of the TPI is NH₂-Lys-Trp-Cys-Phe-Arg-Val-Cys-Tyr-Arg-Gly-Ile-Cys-Tyr-Arg-Arg-Cys-Arg-CONH₂.  
It adopts antiparallel β-sheet (hairpin) conformation in solution stabilized by two cross-strand <scene name='67/671725/Disulfide_bonds/1'> disulfide bonds </scene>  between Cys³-Cys¹⁶ and Cys⁷-Cys¹², and its [http://en.wikipedia.org/wiki/Protein_primary_structure C-terminus is amidated].<ref name=Laederach>PMID:12369825</ref><ref name=Kushibiki>PMID:24389234</ref>
It adopts antiparallel β-sheet (hairpin) conformation in solution stabilized by two cross-strand <scene name='67/671725/Disulfide_bonds/1'> disulfide bonds </scene>  between Cys³-Cys¹⁶ and Cys⁷-Cys¹², and its [http://en.wikipedia.org/wiki/Protein_primary_structure C-terminus is amidated].<ref name=Laederach>PMID:12369825</ref><ref name=Kushibiki>PMID:24389234</ref>
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Of those 3 linear derivatives of TPI, TPA4 was inactive which was due to its incapability to form hairpin loop structure. This guided to the conclusion that linear tachyplesin analogues do not show preferential affinity for LPS. Therefore, the hairpin properties of the peptide seems to be important for recognition of lipopolysaccharides and its biological activities.
Of those 3 linear derivatives of TPI, TPA4 was inactive which was due to its incapability to form hairpin loop structure. This guided to the conclusion that linear tachyplesin analogues do not show preferential affinity for LPS. Therefore, the hairpin properties of the peptide seems to be important for recognition of lipopolysaccharides and its biological activities.
CDT is a TP I mutant in which all Cys residues are deleted.
TPI undergoes confirmation change in <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/5'>more rigid and twisted in presence of LPS, than in the presence of water </scene>, making it more stable.
TPI undergoes confirmation change in <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/5'>more rigid and twisted in presence of LPS, than in the presence of water </scene>, making it more stable.



Revision as of 15:23, 29 December 2014

Introduction

1MA2

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References