GCRFLDA: scoring lncRNA-disease associations using graph convolution matrix completion with conditional random field

Author:

Fan Yongxian1ORCID,Chen Meijun2,Pan Xiaoyong3ORCID

Affiliation:

1. School of Computer Science and Information Security, Guilin University of Electronic Technology

2. Guilin University of Electronic Technology, Guilin 541004, China

3. Department of Automation of Shanghai Jiao Tong University

Abstract

Abstract Long noncoding RNAs (lncRNAs) play important roles in various biological regulatory processes, and are closely related to the occurrence and development of diseases. Identifying lncRNA-disease associations is valuable for revealing the molecular mechanism of diseases and exploring treatment strategies. Thus, it is necessary to computationally predict lncRNA-disease associations as a complementary method for biological experiments. In this study, we proposed a novel prediction method GCRFLDA based on the graph convolutional matrix completion. GCRFLDA first constructed a graph using the available lncRNA-disease association information. Then, it constructed an encoder consisting of conditional random field and attention mechanism to learn efficient embeddings of nodes, and a decoder layer to score lncRNA-disease associations. In GCRFLDA, the Gaussian interaction profile kernels similarity and cosine similarity were fused as side information of lncRNA and disease nodes. Experimental results on four benchmark datasets show that GCRFLDA is superior to other existing methods. Moreover, we conducted case studies on four diseases and observed that 70 of 80 predicted associated lncRNAs were confirmed by the literature.

Funder

Guilin University of Electronic Technology

Guangxi Natural Science Foundation

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

Reference53 articles.

1. Roles, functions, and mechanisms of Long non-coding RNAs in cancer;Fang;Genomics Proteomics Bioinformatics,2016

2. Long noncoding RNAs: past, present, and future;Kung;Genetics,2013

3. SOX9-activated FARSA-AS1 predetermines cell growth, stemness, and metastasis in colorectal cancer through upregulating FARSA and SOX9;Zhou;Cell Death Dis,2020

4. Clinical effects and molecular mechanisms of lncRNA MNX1-AS1 in malignant tumors;Shen;Am J Transl Res,2020

5. Long non-coding RNAs and complex diseases: from experimental results to computational models;Chen;Brief Bioinform,2017

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