Cytoskeletal Keratins Are Overexpressed in a Zebrafish Model of Idiopathic Scoliosis

Author:

Cuevas Melissa1,Terhune Elizabeth1ORCID,Wethey Cambria1,James MkpoutoAbasi1,Netsanet Rahwa1,Grofova Denisa1,Monley Anna12ORCID,Hadley Miller Nancy12

Affiliation:

1. Department of Orthopedics, University of Colorado Anschutz Medical Campus, Aurora, CO 80045, USA

2. Musculoskeletal Research Center, Children’s Hospital Colorado, Aurora, CO 80045, USA

Abstract

Idiopathic scoliosis (IS) is a three-dimensional rotation of the spine >10 degrees with an unknown etiology. Our laboratory established a late-onset IS model in zebrafish (Danio rerio) containing a deletion in kif7. A total of 25% of kif7co63/co63 zebrafish develop spinal curvatures and are otherwise developmentally normal, although the molecular mechanisms underlying the scoliosis are unknown. To define transcripts associated with scoliosis in this model, we performed bulk mRNA sequencing on 6 weeks past fertilization (wpf) kif7co63/co63 zebrafish with and without scoliosis. Additionally, we sequenced kif7co63/co63, kif7co63/+, and AB zebrafish (n = 3 per genotype). Sequencing reads were aligned to the GRCz11 genome and FPKM values were calculated. Differences between groups were calculated for each transcript by the t-test. Principal component analysis showed that transcriptomes clustered by sample age and genotype. kif7 mRNA was mildly reduced in both homozygous and heterozygous zebrafish compared to AB. Sonic hedgehog target genes were upregulated in kif7co63/co63 zebrafish over AB, but no difference was detected between scoliotic and non-scoliotic mutants. The top upregulated genes in scoliotic zebrafish were cytoskeletal keratins. Pankeratin staining of 6 wpf scoliotic and non-scoliotic kif7co63/co63 zebrafish showed increased keratin levels within the zebrafish musculature and intervertebral disc (IVD). Keratins are major components of the embryonic notochord, and aberrant keratin expression has been associated with intervertebral disc degeneration (IVDD) in both zebrafish and humans. The role of increased keratin accumulation as a molecular mechanism associated with the onset of scoliosis warrants further study.

Funder

Scoliosis Research Society SRS-Cotrel Basic Science Research Grant

National Institutes of Health

Children’s Hospital Colorado

University of Colorado Anschutz Department of Orthopedics

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

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