Antimicrobial peptides: Difference between revisions
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(A) Transmembrane Pore Models of AMP Membrane Activity and (B) Nonpore Models of AMP Activity | (A) Transmembrane Pore Models of AMP Membrane Activity and (B) Nonpore Models of AMP Activity | ||
In the Transmembrane Pore Models, it is suggested that AMPs form many pores in the mambrane, so that | In the Transmembrane Pore Models, it is suggested that AMPs form many pores in the mambrane, so that it cannot hold it's content anymore. | ||
tha transmembrane pore mechanism has 2 main models: 1- barrel stave pore model ,that claims peptides interact laterally with one another to form a specific structure enclosing a water-filled channel, much like a protein ion channel. | |||
2- toroidal pore model, that claims specific peptide–peptide interactions are not present, and instead, single peptides are bound to the membrane’s phospholipids and disturbe it’s structure.. | |||
the Nonepore model claims peptides bind to the membrane until it collapses. It is devided into 2 main mechanisms: | |||
1- The carpet model. In this model, antimicrobial peptides accumulate on the membrane surface with an orientation that is parallel to the membrane.When peptide concentration has reached a critical level permeabilization occurs via global bilayer destabilization. | |||
2- detergent model- collapse of membrane integrity, observed with some AMPs at high peptide concentration. | |||
== AMPs structures == | |||
As we mentioned earlier, Although AMPs have the same effect on the cell mambrane, they do not seem to have the same structure. we can find a big variety of structures among familiar AMPs. (1) Some have helical structures, for some of the peptide sequence, such as Magainin, (2LSA), or a helical structure throughout the whole peptide, such as Magainin2 (2MAG). this peptide was found on a frogs skin. you can see the page about Magainin2 here_______. | |||
== | (2) Beta-sheet structures: | ||
<scene name='67/676980/1hvz_-_cyclic_peptide/1'>1HVZ - cyclic peptides, disulfide links</scene> RTD1, A CYCLIC ANTIMICROBIAL DEFENSIN FROM RHESUS MACAQUE LEUKOCYTES, 55% beta sheet (4 strands; 10 residues), we can see ths cystein residues, | |||
PROTEGRIN 1 from porcine leukocytes, NMR, has a hairpin shape | |||
<scene name='67/676980/1pg1_cationic_residues/1'>1pg1_cationic_residues</scene> | |||
63% beta sheet, 2 strands, 12 residues | |||
Protegrins are a family of arginine - and cysteine rich cationic peptides | |||
(c) and some have combined structures, like Human beta defencin1 <scene name='67/676980/1ijv_lysin/1'>1IJV lysin</scene> | |||
== Disease == | == Disease == | ||
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<scene name='67/676980/4mgp_ala-mag/1'>4MGP - Ala Mag</scene> | <scene name='67/676980/4mgp_ala-mag/1'>4MGP - Ala Mag</scene> | ||
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<scene name='67/676980/4mgp_hydrophobic_residues/2'>4MGP hydrophobic residues</scene> | <scene name='67/676980/4mgp_hydrophobic_residues/2'>4MGP hydrophobic residues</scene> | ||
This is a sample scene created with SAT to <scene name="/12/3456/Sample/1">color</scene> by Group, and another to make <scene name="/12/3456/Sample/2">a transparent representation</scene> of the protein. You can make your own scenes on SAT starting from scratch or loading and editing one of these sample scenes. | This is a sample scene created with SAT to <scene name="/12/3456/Sample/1">color</scene> by Group, and another to make <scene name="/12/3456/Sample/2">a transparent representation</scene> of the protein. You can make your own scenes on SAT starting from scratch or loading and editing one of these sample scenes. | ||
Revision as of 06:50, 19 January 2015
Your Heading Here (maybe something like 'Structure')
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