DeepPolyA: A Convolutional Neural Network Approach for Polyadenylation Site Prediction
Document Type
Article
Publication Date
4-11-2018
Abstract
Polyadenylation (Poly(A)) plays crucial roles in gene regulation, especially in messenger RNA metabolism, protein diversification, and protein localization. Accurate prediction of polyadenylation sites and identification of motifs that controlling polyadenylation are fundamental for interpreting the patterns of gene expression, improving the accuracy of genome annotation and comprehending the mechanisms that governing gene regulation. Despite considerable advances in using machine learning techniques for this problem, its efficiency is still limited by the lack of experiences and domain knowledge to carefully design and generate useful features, especially for plants. With the increasing availability of extensive genomic data sets and leading computational techniques, deep learning methods, especially convolutional neural networks, have been applied to automatically identify and understand gene regulation directly from gene sequences and predict unknown sequence profiles. Here, we present DeepPolyA, a new deep convolutional neural network-based approach, to predict polyadenylation sites from the plant Arabidopsis thaliana gene sequences. We investigate various deep neural network architectures and evaluate their performance against classical machine learning algorithms and several popular deep learning models. Experimental results demonstrate that DeepPolyA is substantially better than competing methods regarding various performance metrics. We further visualize the learned motifs of DeepPolyA to provide insights of our model and learned polyadenylation signals.
Identifier
85045347913 (Scopus)
Publication Title
IEEE Access
External Full Text Location
https://doi.org/10.1109/ACCESS.2018.2825996
e-ISSN
21693536
First Page
24340
Last Page
24349
Volume
6
Recommended Citation
Gao, Xin; Zhang, Jie; Wei, Zhi; and Hakonarson, Hakon, "DeepPolyA: A Convolutional Neural Network Approach for Polyadenylation Site Prediction" (2018). Faculty Publications. 8724.
https://digitalcommons.njit.edu/fac_pubs/8724
