Original Article

Missense variant in interleukin-6 signal transducer identified as susceptibility locus for rheumatoid arthritis in Chinese patients

Volume 36 · Issue 4 Publish Date: December 31, 2021
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DOI
Khai Pang Leong ORCID
Personalized Medicine Service, Tan Tock Seng Hospital, Tan Tock Seng, Singapore image/svg+xml
Mei Yun Yong ORCID
Department of Rheumatology, Allergy and Immunology, Tan Tock Seng Hospital, Tan Tock Seng, Singapore image/svg+xml
Liuh Ling Goh ORCID
Molecular Diagnostic Laboratory, Tan Tock Seng Hospital, Tan Tock Seng, Singapore image/svg+xml
Chia Mun Woo ORCID
Department of Rheumatology, Allergy and Immunology, Tan Tock Seng Hospital, Tan Tock Seng, Singapore image/svg+xml
Chia Wei Lim ORCID
Personalized Medicine Service, Tan Tock Seng Hospital, Tan Tock Seng, Singapore image/svg+xml
Ee Tzun Koh ORCID
Department of Rheumatology, Allergy and Immunology, Tan Tock Seng Hospital, Tan Tock Seng, Singapore image/svg+xml
Khai Pang Leong, Mei Yun Yong, Liuh Ling Goh, Chia Mun Woo, Chia Wei Lim, & Ee Tzun Koh. (2021). Missense variant in interleukin-6 signal transducer identified as susceptibility locus for rheumatoid arthritis in Chinese patients. Archives of Rheumatology, 36(4), 603–610. https://doi.org/10.46497/ArchRheumatol.2021.8127
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Abstract

Objectives: This study aims to uncover variants of large effect size and allele frequency below 5% by sequencing all extant genes associated with rheumatoid arthritis (RA) in a homogeneous patient cohort.

Patients and methods: This retrospective study was conducted between January 2001 and December 2017. We selected Chinese RA patients positive for anti-citrullinated peptide antibody (ACPA). All the 128 known candidate genes identified through genome-wide association studies were sequenced in 48 RA patients (15 males, 33 females; mean age 53.32±8.98 years; range, 32 to 75 years) and 45 controls (11 males, 34 females; mean age 32.18±9.54; range, 21 to 57 years). The exonic regions of these genes were sequenced. The resultant data were analyzed for association using single variant association and pathway-based association enrichment tests. The genetic burden due to low-frequency variants was assessed with the C-alpha test. The candidate variants that showed significant association were validated in a larger cohort of 500 RA cases (71 males, 429 females; mean age 48.6±12.2 years; range, 24 to 92 years) and 500 controls (66 males, 434 females; mean age 32.3±10.1 years; range, 21 to 73 years).

Results: Thirty-nine variants in 21 genes were identified using single variant association analysis and C-alpha test, with stepwise filtering. Among these, the missense variant in interleukin-6 signal transducer (IL-6ST) 5:55260065 (p.Cys47Phe) was significantly associated with RA in Chinese patients in Singapore.

Conclusion: Our results suggest that a mutation in IL-6ST (5:55260065) confers risk of RA in Chinese patients in Singapore.

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Article Info
Published In
Journal Archives of Rheumatology
Volume / Issue Volume 36 · Issue 4
Pages 603-610
History
Published Online December 31, 2021
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Affiliations
Khai Pang Leong ORCID
Personalized Medicine Service, Tan Tock Seng Hospital, Tan Tock Seng, Singapore
Mei Yun Yong ORCID
Department of Rheumatology, Allergy and Immunology, Tan Tock Seng Hospital, Tan Tock Seng, Singapore
Liuh Ling Goh ORCID
Molecular Diagnostic Laboratory, Tan Tock Seng Hospital, Tan Tock Seng, Singapore
Chia Mun Woo ORCID
Department of Rheumatology, Allergy and Immunology, Tan Tock Seng Hospital, Tan Tock Seng, Singapore
Chia Wei Lim ORCID
Personalized Medicine Service, Tan Tock Seng Hospital, Tan Tock Seng, Singapore
Ee Tzun Koh ORCID
Department of Rheumatology, Allergy and Immunology, Tan Tock Seng Hospital, Tan Tock Seng, Singapore
Cite this Article
Khai Pang Leong, Mei Yun Yong, Liuh Ling Goh, Chia Mun Woo, Chia Wei Lim, & Ee Tzun Koh. (2021). Missense variant in interleukin-6 signal transducer identified as susceptibility locus for rheumatoid arthritis in Chinese patients. Archives of Rheumatology, 36(4), 603–610. https://doi.org/10.46497/ArchRheumatol.2021.8127
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