Large lntragenic Deletion in DSTYK Underlies Autosomal-Recessive Complicated Spastic Paraparesis, SPG23
AMERICAN JOURNAL OF HUMAN GENETICS
Authors: Lee, John Y. W.; Hsu, Chao-Kai; Michael, Magdalene; Nanda, Arti; Liu, Lu; McMillan, James R.; Pourreyron, Celine; Takeichi, Takuya; Tolar, Jakub; Reid, Evan; Hayday, Thomas; Blumen, Sergiu C.; Abu-Mouch, Saif; Straussberg, Rachel; Basel-Vanagaite, Lina; Barhum, Yael; Zouabi, Yasmin; Al-Ajmi, Hejab; Huang, Hsin-Yu; Lin, Ting-Chien; Akiyama, Masashi; Lee, Julia Y. Y.; McLean, W. H. Irwin; Simpson, Michael A.; Parsons, Maddy; McGrath, John A.
Abstract
SPG23 is an autosomal-recessive neurodegenerative subtype of lower limb spastic paraparesis with additional diffuse skin and hair dyspigmentation at birth followed by further patchy pigment loss during childhood. Previously, genome-wide linkage in an Arab-Israeli pedigree mapped the gene to an approximately 25 cM locus on chromosome 1q24-q32. By using whole-exome sequencing in a further Palestinian-Jordanian SPG23 pedigree, we identified a complex homozygous 4-kb deletion/20-bp insertion in DSTYK (dual serine-threonine and tyrosine protein kinase) in all four affected family members. DSTYK is located within the established linkage region and we also found the same mutation in the previously reported pedigree and another Israeli pedigree (total of ten affected individuals from three different families). The mutation removes the last two exons and part of the 3' UTI2 of DSTYK. Skin biopsies revealed reduced DSTYK protein levels along with focal loss of melanocytes. Ultrastructurally, swollen mitochondria and cytoplasmic vacuoles were also noted in remaining melanocytes and some keratinocytes and fibroblasts. Cultured keratinocytes and fibroblasts from an affected individual, as well as knockdown of Dstyk in mouse melanocytes, keratinocytes, and fibroblasts, were associated with increased cell death after ultraviolet irradiation. Keratinocytes from an affected individual showed loss of kinase activity upon stimulation with fibroblast growth factor. Previously, dominant mutations in DSTYK were implicated in congenital urological developmental disorders, but our study identifies different phenotypic consequences for a recurrent autosomal-recessive deletion mutation in revealing the genetic basis of SPG23.
Notochord vacuoles absorb compressive bone growth during zebrafish spine formation
ELIFE
Authors: Bagwell, Jennifer; Norman, James; Ellis, Kathryn; Peskin, Brianna; Hwang, James; Ge, Xiaoyan; Nguyen, Stacy, V; McMenamin, Sarah K.; Stainier, Didier Y. R.; Bagnat, Michel
Abstract
The vertebral column or spine assembles around the notochord rod which contains a core made of large vacuolated cells. Each vacuolated cell possesses a single fluid-filled vacuole, and loss or fragmentation of these vacuoles in zebrafish leads to spine kinking. Here, we identified a mutation in the kinase gene dstyk that causes fragmentation of notochord vacuoles and a severe congenital scoliosis-like phenotype in zebrafish. Live imaging revealed that Dstyk regulates fusion of membranes with the vacuole. We find that localized disruption of notochord vacuoles causes vertebral malformation and curving of the spine axis at those sites. Accordingly, in dstyk mutants the spine curves increasingly over time as vertebral bone formation compresses the notochord asymmetrically, causing vertebral malformations and kinking of the axis. Together, our data show that notochord vacuoles function as a hydrostatic scaffold that guides symmetrical growth of vertebrae and spine formation.