CapsNet-LDA: predicting lncRNA-disease associations using attention mechanism and capsule network based on multi-view data

Author:

Zhang Zequn1,Xu Junlin2,Wu Yanan1,Liu Niannian1,Wang Yinglong1,Liang Ying1

Affiliation:

1. Jiangxi Agricultural University College of Computer and Information Engineering, , Nanchang, 310045 Jiangxi , China

2. Hunan University College of Information Science and Engineering, , Changsha 410082, Hunan , China

Abstract

Abstract Cumulative studies have shown that many long non-coding RNAs (lncRNAs) are crucial in a number of diseases. Predicting potential lncRNA-disease associations (LDAs) can facilitate disease prevention, diagnosis and treatment. Therefore, it is vital to develop practical computational methods for LDA prediction. In this study, we propose a novel predictor named capsule network (CapsNet)-LDA for LDA prediction. CapsNet-LDA first uses a stacked autoencoder for acquiring the informative low-dimensional representations of the lncRNA-disease pairs under multiple views, then the attention mechanism is leveraged to implement an adaptive allocation of importance weights to them, and they are subsequently processed using a CapsNet-based architecture for predicting LDAs. Different from the conventional convolutional neural networks (CNNs) that have some restrictions with the usage of scalar neurons and pooling operations. the CapsNets use vector neurons instead of scalar neurons that have better robustness for the complex combination of features and they use dynamic routing processes for updating parameters. CapsNet-LDA is superior to other five state-of-the-art models on four benchmark datasets, four perturbed datasets and an independent test set in the comparison experiments, demonstrating that CapsNet-LDA has excellent performance and robustness against perturbation, as well as good generalization ability. The ablation studies verify the effectiveness of some modules of CapsNet-LDA. Moreover, the ability of multi-view data to improve performance is proven. Case studies further indicate that CapsNet-LDA can accurately predict novel LDAs for specific diseases.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

Reference81 articles.

1. No-nonsense functions for long noncoding RNAs;Nagano;Cell,2011

2. Long noncoding RNAs: functional surprises from the RNA world;Wilusz;Genes Dev,2009

3. LncRNA neat1 promotes Alzheimer’s disease by down regulating micro-27a-3p;Dong;Am J Transl Res,2021

4. Noncoding RNAs in Alzheimer’s disease. Wiley Interdisciplinary Reviews;Laura Idda;RNA,2018

5. A peptide encoded by a putative lncRNA hoxb-as3 suppresses colon cancer growth;Huang;Mol Cell,2017

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