Department of Developmental Biology, Washington University School of Medicine, Saint Louis, MO 63110, USA.
Department of Medicine, Vanderbilt University Medical Center, Nashville, TN, USA.
Dev Biol. 2014 Feb 1;386(1):72-85. doi: 10.1016/j.ydbio.2013.11.028. Epub 2013 Dec 11.
Congenital vertebral malformations (CVM) occur in 1 in 1000 live births and in many cases can cause spinal deformities, such as scoliosis, and result in disability and distress of affected individuals. Many severe forms of the disease, such as spondylocostal dystostosis, are recessive monogenic traits affecting somitogenesis, however the etiologies of the majority of CVM cases remain undetermined. Here we demonstrate that morphological defects of the notochord in zebrafish can generate congenital-type spine defects. We characterize three recessive zebrafish leviathan/col8a1a mutant alleles ((m531, vu41, vu105)) that disrupt collagen type VIII alpha1a (col8a1a), and cause folding of the embryonic notochord and consequently adult vertebral column malformations. Furthermore, we provide evidence that a transient loss of col8a1a function or inhibition of Lysyl oxidases with drugs during embryogenesis was sufficient to generate vertebral fusions and scoliosis in the adult spine. Using periodic imaging of individual zebrafish, we correlate focal notochord defects of the embryo with vertebral malformations (VM) in the adult. Finally, we show that bends and kinks in the notochord can lead to aberrant apposition of osteoblasts normally confined to well-segmented areas of the developing vertebral bodies. Our results afford a novel mechanism for the formation of VM, independent of defects of somitogenesis, resulting from aberrant bone deposition at regions of misshapen notochord tissue.
先天性脊柱畸形(CVM)在活产儿中的发生率为 1/1000,在许多情况下可导致脊柱畸形,如脊柱侧凸,并导致受影响个体的残疾和痛苦。许多严重形式的疾病,如脊椎肋突发育不良,是影响体节形成的隐性单基因特征,但大多数 CVM 病例的病因仍未确定。在这里,我们证明斑马鱼脊索的形态缺陷可产生先天性脊柱缺陷。我们描述了三种隐性斑马鱼利维坦/col8a1a 突变等位基因((m531、vu41、vu105)),它们破坏了胶原类型 VIII alpha1a(col8a1a),导致胚胎脊索折叠,进而导致成年脊柱畸形。此外,我们提供的证据表明,在胚胎期短暂丧失 col8a1a 功能或用药物抑制赖氨酰氧化酶足以在成年脊柱中产生椎体融合和脊柱侧凸。通过对单个斑马鱼的定期成像,我们将胚胎脊索的局部缺陷与成年脊柱的椎体畸形(VM)相关联。最后,我们表明脊索的弯曲和扭曲可导致成骨细胞异常附着在正常发育椎体的分隔区域。我们的结果提供了一种新的 VM 形成机制,与体节形成缺陷无关,而是由形态异常的脊索组织区域异常骨沉积引起的。