Diseases such as type 2 diabetes, Alzheimer's and Parkinson's share as common feature the accumulation of mis-folded disease-specific protein aggregates into fibrillar structures, or plaques. These fibrils may either be toxic by themselves, or act as reservoirs for smaller cytotoxic oligomers. This suggests to investigate molecules as potential therapeutics that either reduce fibril formation or increase fibril stability. One example is rat amylin, which can inhibit aggregation of human amylin, a hallmark of type 2 diabetes. In the present paper, we use molecular dynamics to compare the stability of various preformed aggregates, built out of either human amylin, rat amylin, or mixtures of both. We considered two types of fibril-like oligome...
Most proteins do not aggregate while in their native functional states. However, they may be disturb...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
AbstractAmyloid proteins aggregate into polymorphic fibrils that damage tissues of the brain, nerves...
<div><p>Diseases such as type 2 diabetes, Alzheimer’s and Parkinson’s share as common feature the ac...
Diseases such as type 2 diabetes, Alzheimer’s and Parkinson’s share as common feature the accumulati...
Workalemahu M. Berhanu graduated in 2011 from the University of Central Florida with a PhD in Chemis...
Recent epidemiological data have shown that patients suffering from Type 2 Diabetes Mellitus have an...
Human islet amyloid polypeptide (hIAPP), also known as amylin, is a 37-amino-acid peptide, co-secret...
In most type 2 diabetes patients, amyloid plaques have been found juxtaposed with membranes of pancr...
Amyloid oligomers are considered to play essential roles in the pathogenesis of amyloid-related dege...
Full-length native rat amylin 1-37 has previously been widely shown to be unable to form fibrils and...
Amyloid oligomers are considered to play essential roles in the pathogenesis of amyloid-related dege...
In most type 2 diabetes patients, amyloid plaques have been found juxtaposed with membranes of pancr...
AbstractPatients with type II diabetes exhibit fibrillar deposits of human amylin protein in the pan...
Most proteins do not aggregate while in their native functional states. However, they may be disturb...
Most proteins do not aggregate while in their native functional states. However, they may be disturb...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
AbstractAmyloid proteins aggregate into polymorphic fibrils that damage tissues of the brain, nerves...
<div><p>Diseases such as type 2 diabetes, Alzheimer’s and Parkinson’s share as common feature the ac...
Diseases such as type 2 diabetes, Alzheimer’s and Parkinson’s share as common feature the accumulati...
Workalemahu M. Berhanu graduated in 2011 from the University of Central Florida with a PhD in Chemis...
Recent epidemiological data have shown that patients suffering from Type 2 Diabetes Mellitus have an...
Human islet amyloid polypeptide (hIAPP), also known as amylin, is a 37-amino-acid peptide, co-secret...
In most type 2 diabetes patients, amyloid plaques have been found juxtaposed with membranes of pancr...
Amyloid oligomers are considered to play essential roles in the pathogenesis of amyloid-related dege...
Full-length native rat amylin 1-37 has previously been widely shown to be unable to form fibrils and...
Amyloid oligomers are considered to play essential roles in the pathogenesis of amyloid-related dege...
In most type 2 diabetes patients, amyloid plaques have been found juxtaposed with membranes of pancr...
AbstractPatients with type II diabetes exhibit fibrillar deposits of human amylin protein in the pan...
Most proteins do not aggregate while in their native functional states. However, they may be disturb...
Most proteins do not aggregate while in their native functional states. However, they may be disturb...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
AbstractAmyloid proteins aggregate into polymorphic fibrils that damage tissues of the brain, nerves...