Skip to content
RDL
Network
Ekosistem
Uygulama değiştir
EN
Hakkımızda
SSS
Giriş yap
Başla
FiberID—A technique to identify fibrous protein subclasses — Peter Waltman (2006) | RDL Network
Back
Cite
Save
Save for later
Share
Home
Publications
FiberID—A technique to identify fibrous protein subclasses
DK
Shared by
David Kaplan
FiberID—A technique to identify fibrous protein subclasses
Article
2006
en
Authors
PW
Peter Waltman
AB
Anselm Blumer
DK
David Kaplan
Abstract
1 min read
Abstract Fibrous proteins such as collagen, silk, and elastin play critical biological roles, yet they have been the subject of few projects that use computational techniques to predict either their class or their structure. In this article, we present FiberID, a simple yet effective method for identifying and distinguishing three fibrous protein subclasses from their primary sequences. Using a combination of amino acid composition and fast Fourier measurements, FiberID can classify fibrous proteins belonging to these subclasses with high accuracy by using two standard machine learning techniques (decision trees and Naïve Bayesian classifiers). After presenting our results, we present several fibrous sequences that are regularly misclassified by FiberID as sequences of potential interest for further study. Finally, we analyze the decision trees developed by FiberID for potential insights regarding the structure of these proteins. Proteins 2007. © 2006 Wiley‐Liss, Inc.
Discussion
(0)
Sign in
to like and join the discussion.
No comments yet. Be the first to comment.
Related publications
Article
2015
Fibrous proteins: At the crossroads of genetic engineering and biotechnological applications
Sezin Yiğit
,
Nina Dinjaski
,
David Kaplan
Preprint
2017
Generic Black-Box End-to-End Attack Against State of the Art API Call Based Malware Classifiers
Ishai Rosenberg
,
Asaf Shabtai
,
Lior Rokach
,
Yuval Elovici
arXiv (Cornell University)
Preprint
2017
Generic Black-Box End-to-End Attack Against State of the Art API Call Based Malware Classifiers
Ishai Rosenberg
,
Asaf Shabtai
,
Lior Rokach
,
Yuval Elovici
Preprint
2017
Generic Black-Box End-to-End Attack Against State of the Art API Call Based Malware Classifiers
Ishai Rosenberg
,
Asaf Shabtai
,
Lior Rokach
,
Yuval Elovici
arXiv (Cornell University)
Article
1999
Solid State Conformational Transitions In Peptides Modeling B. <i>Mori</i> Fibroin
Donna L. Wilson
,
Regina Valluzzi
,
T. Vuong
,
S-J Chien
,
Samuel P. Gido
,
David Kaplan
Discussion(0)
No comments yet. Be the first to comment.