Understanding which peptides and proteins have the potential to undergo amyloid formation and what driving forces are responsible for amyloid-like fiber formation and stabilization remains limited. This is mainly because proteins that can undergo structural changes, which lead to amyloid formation, are quite diverse and share no obvious sequence or structural homology, despite the structural similarity found in the fibrils. To address these issues, a novel approach based on recursive feature selection and feed-forward neural networks was undertaken to identify key features highly correlated with the self-assembly problem. This approach allowed the identification of seven physicochemical and biochemical properties of the amino acids highly a...
Motivation: Experimental evidence suggests that certain short pro-tein segments have stronger amyloi...
Protein deposition as amyloid fibrils underlies more than twenty severely debilitating human disorde...
We present an efficient computational architecture designed using supervised machine learning model ...
Understanding which peptides and proteins have the potential to undergo amyloid formation and what d...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
<div><p>Understanding which peptides and proteins have the potential to undergo amyloid formation an...
Understanding which peptides and proteins have the potential to undergo amyloid formation and what d...
Understanding which peptides and proteins have the potential to undergo amyloid formation and what d...
AbstractNumerous studies have shown that the ability to form amyloid fibrils is an inherent property...
Amyloid formation is dependent to a considerable extent on the amino acid sequence of the protein. T...
Background: Protein aggregation is a significant problem in the biopharmaceutical industry (protein...
Soluble functional proteins may transform into insoluble amyloid fibrils that deposit in a variety o...
Background: Protein aggregation is a significant problem in the biopharmaceutical industry (protein...
AbstractIt has been shown that the propensity of a protein to form amyloid-like fibrils can be predi...
Motivation: Experimental evidence suggests that certain short protein segments have stronger amyloid...
Motivation: Experimental evidence suggests that certain short pro-tein segments have stronger amyloi...
Protein deposition as amyloid fibrils underlies more than twenty severely debilitating human disorde...
We present an efficient computational architecture designed using supervised machine learning model ...
Understanding which peptides and proteins have the potential to undergo amyloid formation and what d...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
<div><p>Understanding which peptides and proteins have the potential to undergo amyloid formation an...
Understanding which peptides and proteins have the potential to undergo amyloid formation and what d...
Understanding which peptides and proteins have the potential to undergo amyloid formation and what d...
AbstractNumerous studies have shown that the ability to form amyloid fibrils is an inherent property...
Amyloid formation is dependent to a considerable extent on the amino acid sequence of the protein. T...
Background: Protein aggregation is a significant problem in the biopharmaceutical industry (protein...
Soluble functional proteins may transform into insoluble amyloid fibrils that deposit in a variety o...
Background: Protein aggregation is a significant problem in the biopharmaceutical industry (protein...
AbstractIt has been shown that the propensity of a protein to form amyloid-like fibrils can be predi...
Motivation: Experimental evidence suggests that certain short protein segments have stronger amyloid...
Motivation: Experimental evidence suggests that certain short pro-tein segments have stronger amyloi...
Protein deposition as amyloid fibrils underlies more than twenty severely debilitating human disorde...
We present an efficient computational architecture designed using supervised machine learning model ...