Liu Zhenlei, Li Kang, Wang Kai, Zhang Lei, Jia Shanhang, Wang He, Jian Fengzeng, Wu Hao
Department of Neurosurgery, Xuanwu Hospital, Capital Medical University, Beijing, China.
Spine Center, China International Neuroscience Institute (China-INI), Beijing, China.
Neurospine. 2024 Jun;21(2):555-564. doi: 10.14245/ns.2347238.619. Epub 2024 Feb 1.
To investigate the developmental defects caused by knockdown of best1 gene in zebrafish as a model for a subtype of craniovertebral junction (CVJ) malformation.
Two antisense morpholinos (MOs) were designed targeting zebrafish best1 to block translation (ATG-MO) or to disrupt splicing (I3E4-MO). MOs were microinjected into fertilized one-cell embryos. Efficacy of splicing MO was confirmed by reverse transcription-polymerase chain reaction. Phenotypes were analyzed and quantified by microscopy at multiple developmental stages. Neuronal outgrowth was assessed in transgenic zebrafish expressing green fluorescent protein in neurons. Skeletal ossification was visualized by Calcein staining.
Knockdown of best1 resulted in zebrafish embryos with shorter body length, curved axis, low survival rate, microcephaly, reduced eye size, smaller head and brain, impaired neuronal outgrowth, and reduced ossification of craniofacial and vertebral bone.
Best1 gene plays critical roles in ophthalmologic, neurological and skeletal development in zebrafish. A patient with a premature stop codon in BEST1 gene exhibited similar phenotypes, implying a subtype of CVJ malformation.
以斑马鱼为颅颈交界区(CVJ)畸形亚型模型,研究敲低best1基因导致的发育缺陷。
设计两种针对斑马鱼best1的反义吗啉代寡核苷酸(MOs),分别用于阻断翻译(ATG-MO)或破坏剪接(I3E4-MO)。将MOs显微注射到单细胞受精卵中。通过逆转录-聚合酶链反应确认剪接MO的效果。在多个发育阶段通过显微镜分析和量化表型。在神经元中表达绿色荧光蛋白的转基因斑马鱼中评估神经元生长。通过钙黄绿素染色观察骨骼骨化情况。
敲低best1导致斑马鱼胚胎体长缩短、轴弯曲、存活率低、小头畸形、眼睛变小、头部和脑体积减小、神经元生长受损以及颅面部和椎骨骨化减少。
Best1基因在斑马鱼的眼科、神经和骨骼发育中起关键作用。一名BEST1基因存在过早终止密码子的患者表现出类似的表型,提示为CVJ畸形的一种亚型。