Molecular Dynamics of Monomeric Iapp in Solution: a Study of Iapp in Water at the Percolation Transition - Maximilian Andrews - Books - Anchor Academic Publishing - 9783954893232 - October 23, 2014
In case cover and title do not match, the title is correct

Molecular Dynamics of Monomeric Iapp in Solution: a Study of Iapp in Water at the Percolation Transition

Maximilian Andrews

Price
₺ 1,658
excl. VAT

Ordered from remote warehouse

Expected delivery Oct 16 - 28
Add to your iMusic wish list

Molecular Dynamics of Monomeric Iapp in Solution: a Study of Iapp in Water at the Percolation Transition

Biological activity for most living organisms is at its highest where the percolation transition occurs; hence, finding such temperature range was of utmost importance. After having found such temperature interval, i.e., between 310K and 330K, conformational studies were performed on full-length human and rat islet amyloid polypeptide, hIAPP and rIAPP respectively, by MD simulations both for the reduced and oxidized IAPP moieties. Studying the monomeric forms of two very similar polypetides that present different amyloidogenic properties could shed light on the aggregation mechanism of human islet amyloid polypeptide; in fact, after hundreds of nanoseconds, above the percolation transition temperature, oxidized hIAPP 'folded"'into a compact structure that was about 10% smaller than the average value of the radius of gyration. Further studies were carried out on some in silico mutated hIAPP moieties in order to pinpoint key residues involved in the 'folding' of hIAPP. Three conditions were needed in order to observe this compact state: the presence of the disulfide bond; the absence of the P28 residue, found in rat IAPP; presence of aromatic residues, in particular F23.

Media Books     Paperback Book   (Book with soft cover and glued back)
Released October 23, 2014
ISBN13 9783954893232
Publishers Anchor Academic Publishing
Pages 148
Dimensions 9 × 148 × 210 mm   ·   199 g
Language English  

Show all

More by Maximilian Andrews