Tenebrio molitor Antifreeze Protein (TmAFP)

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== The difference between TmAFP (hyperactive AFP)
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== The difference between TmAFP (hyperactive AFP) and Type I AFP (moderate AFP) ==
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and Type I AFP (moderate AFP) ==
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TmAFP has special structure of beta helix, due to it the binding site consist of two dimensional surface, <scene name='61/612804/Thr/2'>two arrays of Threonine residues</scene> that can bind to the two plans of ice, prism plane and basal plan. This is why the TH activity can reach 6 Celsius degrees in Hyperactive protein, TmAFP can reach 1.5 Celsius degree.
TmAFP has special structure of beta helix, due to it the binding site consist of two dimensional surface, <scene name='61/612804/Thr/2'>two arrays of Threonine residues</scene> that can bind to the two plans of ice, prism plane and basal plan. This is why the TH activity can reach 6 Celsius degrees in Hyperactive protein, TmAFP can reach 1.5 Celsius degree.
In contrast <scene name='61/612804/Afp1/1'>Type I AFP</scene>, from the fish winter flounder (moderate AFP are usually fish origin), structure is alpha helix allows just one dimensional surface of threonine residue and thus can bind only to one plane of ice (the prism plan). Because of that The TH activity is much lower, maximum TH activity of moderate AFP is 1 Celsius degree.
In contrast <scene name='61/612804/Afp1/1'>Type I AFP</scene>, from the fish winter flounder (moderate AFP are usually fish origin), structure is alpha helix allows just one dimensional surface of threonine residue and thus can bind only to one plane of ice (the prism plan). Because of that The TH activity is much lower, maximum TH activity of moderate AFP is 1 Celsius degree.

Revision as of 16:16, 21 January 2015

Tenebrio Molitor antifreeze protein NMR structure (PDB code 1l1i).

Drag the structure with the mouse to rotate

References

  1. Scotter AJ, Marshall CB, Graham LA, Gilbert JA, Garnham CP, Davies PL. The basis for hyperactivity of antifreeze proteins. Cryobiology. 2006 Oct;53(2):229-39. Epub 2006 Aug 2. PMID:16887111 doi:http://dx.doi.org/10.1016/j.cryobiol.2006.06.006
  2. Liu K, Jia Z, Chen G, Tung C, Liu R. Systematic size study of an insect antifreeze protein and its interaction with ice. Biophys J. 2005 Feb;88(2):953-8. PMID:15713600 doi:http://dx.doi.org/10.1529/biophysj.104.051169
  3. 3.0 3.1 Liou YC, Tocilj A, Davies PL, Jia Z. Mimicry of ice structure by surface hydroxyls and water of a beta-helix antifreeze protein. Nature. 2000 Jul 20;406(6793):322-4. PMID:10917536 doi:10.1038/35018604
  4. doi: https://dx.doi.org/10.1016/S0968-0004(01)02028-X

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