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Original Article

Association of the Polymorphism rs13259960 in SLEAR With Predisposition to Systemic Lupus Erythematosus

Zhen Fan PhD

Chinese Academy of Sciences, Beijing, China

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Xiaowei Chen

Chinese Academy of Sciences, Beijing, China

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Lu Liu

Huashan Hospital and Fudan University, Shanghai, China, and First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Caihong Zhu

The First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Jinhua Xu

Huashan Hospital and Fudan University, Shanghai, China

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Xianyong Yin

Huashan Hospital and Fudan University, Shanghai, China, and First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Yujun Sheng

Huashan Hospital and Fudan University, Shanghai, China, and First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Zhengwei Zhu

Huashan Hospital and Fudan University, Shanghai, China, and First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Leilei Wen

Huashan Hospital and Fudan University, Shanghai, China, and First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Xianbo Zuo

The First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Xiaodong Zheng

The First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Yaohua Zhang

Huashan Hospital and Fudan University, Shanghai, China

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Jingkai Xu

The First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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He Huang BSc

The First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Fusheng Zhou

The First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Liangdan Sun

The First Affiliated Hospital of Anhui Medical University and Anhui Medical University, Hefei, China

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Jianjun Luo

Chinese Academy of Sciences, Beijing, China

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Dongdong Zhang

Chinese Academy of Sciences, Beijing, China

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Xiaomin Chen

Chinese Academy of Sciences, Beijing, China

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Ya Cui

Chinese Academy of Sciences, Beijing, China

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Yajing Hao

Chinese Academy of Sciences, Beijing, China

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Yong Cui

Corresponding Author

E-mail address: wuhucuiyong@vip.163.com

China‐Japan Friendship Hospital, Beijing, China

Address correspondence to Yong Cui, MD, PhD, China‐Japan Friendship Hospital, Yinghuayuan East Street, Chaoyang District, Beijing 100029, China (e‐mail:

wuhucuiyong@vip.163.com

); or to Xuejun Zhang, MD, PhD, Huashan Hospital, Fudan University, 433 Huashan Road, Shanghai 200040, China 65161016 (e‐mail:

ayzxj@vip.sina.com

); or to Runsheng Chen, BSc, Chinese Academy of Sciences, Institute of Biophysics, 15 Datun Road, Chaoyang District, Beijing 100101, China (e‐mail:

rschen@ibp.ac.cn

).Search for more papers by this author
Xuejun Zhang

Corresponding Author

E-mail address: ayzxj@vip.sina.com

Huashan Hospital and Fudan University, Shanghai, China

Address correspondence to Yong Cui, MD, PhD, China‐Japan Friendship Hospital, Yinghuayuan East Street, Chaoyang District, Beijing 100029, China (e‐mail:

wuhucuiyong@vip.163.com

); or to Xuejun Zhang, MD, PhD, Huashan Hospital, Fudan University, 433 Huashan Road, Shanghai 200040, China 65161016 (e‐mail:

ayzxj@vip.sina.com

); or to Runsheng Chen, BSc, Chinese Academy of Sciences, Institute of Biophysics, 15 Datun Road, Chaoyang District, Beijing 100101, China (e‐mail:

rschen@ibp.ac.cn

).Search for more papers by this author
Runsheng Chen

Corresponding Author

E-mail address: rschen@ibp.ac.cn

Chinese Academy of Sciences and University of Chinese Academy of Sciences, Beijing, China, and Guangdong Geneway Decoding Bio‐Tech Co. Ltd, Foshan, China

Address correspondence to Yong Cui, MD, PhD, China‐Japan Friendship Hospital, Yinghuayuan East Street, Chaoyang District, Beijing 100029, China (e‐mail:

wuhucuiyong@vip.163.com

); or to Xuejun Zhang, MD, PhD, Huashan Hospital, Fudan University, 433 Huashan Road, Shanghai 200040, China 65161016 (e‐mail:

ayzxj@vip.sina.com

); or to Runsheng Chen, BSc, Chinese Academy of Sciences, Institute of Biophysics, 15 Datun Road, Chaoyang District, Beijing 100101, China (e‐mail:

rschen@ibp.ac.cn

).Search for more papers by this author
First published: 12 January 2020
Citations: 1
Supported by the National Natural Science Foundation of China (grants 31871307, 31801072, 31701122, 31520103905, 81320108016, 81573033, and 81871898), the Chinese Academy of Sciences Key Technology Talent Program, and the National Key Basic Research Program of China (Ministry of Science and Technology of the People’s Republic of China grant 2014CB541901).
Drs. Fan, Xiaowei Chen, and Liu contributed equally to this work.
No potential conflicts of interest relevant to this article were reported.

Abstract

Objective

Genome‐wide association studies have identified many susceptibility loci for systemic lupus erythematosus (SLE). However, most of these loci are located in noncoding regions of the genome. Long noncoding RNAs (lncRNAs) are pervasively expressed and have been reported to be involved in various diseases. This study aimed to explore the genetic significance of lncRNAs in SLE.

Methods

A genome‐wide survey of SLE risk variants in lncRNA gene loci was performed in Han Chinese subjects (4,556 with SLE and 9,451 healthy controls). The functional relevance of an SLE risk variant in one of the lncRNA genes was explored using biochemical and molecular cell biology analyses. In vitro loss‐of‐function and gain‐of‐function strategies were used to clarify the functional and phenotypic relevance of this SLE susceptibility lncRNA. Moreover, correlation of this lncRNA with the degree of apoptosis in the peripheral blood of SLE patients was evaluated.

Results

A novel SLE susceptibility locus in a lncRNA gene, designated SLEAR (for SLE‐associated RNA), was identified at the single‐nucleotide polymorphism rs13259960 (odds ratio 1.35, Pcombined = 1.03 × 10−11). The A>G variation at rs13259960, located in an intronic enhancer, was found to impair STAT1 recruitment to the enhancer that loops to the SLEAR promoter, resulting in decreased SLEAR production in peripheral blood mononuclear cells from patients with SLE (3 with the G/G genotype, 22 with A/G, and 103 with A/A at rs13259960; P = 0.0241). Moreover, SLEAR interacted with the RNA binding proteins interleukin enhancer binding factor 2, heterogeneous nuclear RNP F, and TATA‐binding protein–associated factor 15, to form a complex for transcriptional activation of the downstream antiapoptotic genes. In addition, SLEAR regulated apoptosis of Jurkat cells in vitro, and its expression level was correlated with the degree of cell death in the peripheral blood of patients with SLE (r = 0.824, P = 2.15 × 10−8; n = 30).

Conclusion

These findings suggest a mechanism by which the risk variant at rs13259960 modulates SLEAR expression and confers a predisposition to SLE. Taken together, these results may give insights into the etiology of SLE.

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