Exploring the complexity of systemic sclerosis etiology by trio whole genome sequencing

Author:

Dai Hongzheng12ORCID,Ketkar Shamika1,Tan Taotao1,Atkinson Elizabeth G1,Burrage Lindsay13ORCID,Worley Kim C1,Christopher Brian1,Lyons Marka A4,Assassi Shervin4,Mayes Maureen D4,Lee Brendan13

Affiliation:

1. Department of Molecular and Human Genetics, Baylor College of Medicine , One Baylor Plaza, Houston 77030, United States

2. Molecular Division, Baylor Genetics , 2450 Holcombe Blvd, Houston 77021, United States

3. Department of Genetics, Texas Children’s Hospital , 6620 Main St, Houston 77030, United States

4. Division of Rheumatology, University of Texas Health Science Center , 7000 Fannin St, Houston 77030, United States

Abstract

Abstract Systemic sclerosis (SSc) is a heterogeneous rare autoimmune fibrosing disorder affecting connective tissue. The etiology of systemic sclerosis is largely unknown and many genes have been suggested as susceptibility loci of modest impact by genome-wide association study (GWAS). Multiple factors can contribute to the pathological process of the disease, which makes it more difficult to identify possible disease-causing genetic alterations. In this study, we have applied whole genome sequencing (WGS) in 101 indexed family trios, supplemented with transcriptome sequencing on cultured fibroblast cells of four patients and five family controls where available. Single nucleotide variants (SNVs) and copy number variants (CNVs) were examined, with emphasis on de novo variants. We also performed enrichment test for rare variants in candidate genes previously proposed in association with systemic sclerosis. We identified 42 exonic and 34 ncRNA de novo SNV changes in 101 trios, from a total of over 6000 de novo variants genome wide. We observed higher than expected de novo variants in PRKXP1 gene. We also observed such phenomenon along with increased expression in patient group in NEK7 gene. Additionally, we also observed significant enrichment of rare variants in candidate genes in the patient cohort, further supporting the complexity/multi-factorial etiology of systemic sclerosis. Our findings identify new candidate genes including PRKXP1 and NEK7 for future studies in SSc. We observed rare variant enrichment in candidate genes previously proposed in association with SSc, which suggest more efforts should be pursued to further investigate possible pathogenetic mechanisms associated with those candidate genes.

Funder

Department of Defense

National Institute of Mental Health

Caroline Wiess Law Fund for Research in Molecular Medicine

ARCO Foundation Young Teacher-Investigator Fund at Baylor College of Medicine

NIH/NIAMS

Publisher

Oxford University Press (OUP)

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