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氨甲酰磷酸合成酶2在颅感觉回路形成中的新作用。

Novel role for carbamoyl phosphate synthetase 2 in cranial sensory circuit formation.

作者信息

Cox Jane A, LaMora Angela, Johnson Stephen L, Voigt Mark M

机构信息

Department of Pharmacological and Physiological Science, Saint Louis University School of Medicine, 1402 S. Grand Blvd, St. Louis, MO 63104, USA.

Department of Genetics, Washington University of St. Louis, St. Louis, MO 63110, USA.

出版信息

Int J Dev Neurosci. 2014 Apr;33:41-8. doi: 10.1016/j.ijdevneu.2013.11.003. Epub 2013 Nov 23.

Abstract

In zebrafish, cranial sensory circuits form by 4 days post-fertilization. We used a forward genetic screen to identify genes involved in the formation of these circuits. In one mutant allele, sl23, axons arising from the epibranchial sensory ganglia do not form their stereotypical terminal fields in the hindbrain. These embryos also had small eyes and deformed jaws, suggesting a pleiotropic effect. Using positional cloning, a 20-nucleotide deletion in the carbamoyl-phosphate-synthetase2-aspartate-transcarbamylase-dihydroorotase (cad) gene was found. Injection of a CAD morpholino phenocopied the mutant and mutants were rescued by injection of cad RNA. Cad activity is required for pyrimidine biosynthesis, and thus is a prerequisite for nucleic acid production and UDP-dependent protein glycosylation. Perturbation of nucleic acid biosynthesis can result in cell death. sl23 mutants did not exhibit elevated cell death, or gross morphological changes, in their hindbrains. To determine if defective protein glycosylation was involved in the aberrant targeting of sensory axons, we treated wild type embryos with tunicamycin, which blocks N-linked protein glycosylation. Interference with glycosylation via tunicamycin treatment mimicked the sl23 phenotype. Loss of cad reveals a critical role for protein glycosylation in cranial sensory circuit formation.

摘要

在斑马鱼中,受精后4天颅感觉神经回路形成。我们通过正向遗传学筛选来鉴定参与这些神经回路形成的基因。在一个突变等位基因sl23中,鳃上感觉神经节发出的轴突在后脑中不能形成其典型的终末区域。这些胚胎还具有小眼睛和畸形颌骨,提示存在多效性效应。通过定位克隆,发现在氨甲酰磷酸合成酶2-天冬氨酸转氨甲酰酶-二氢乳清酸酶(cad)基因中有一个20个核苷酸的缺失。注射CAD吗啉代寡核苷酸模拟了突变体的表型,并且通过注射cad RNA挽救了突变体。CAD活性是嘧啶生物合成所必需的,因此是核酸产生和UDP依赖性蛋白糖基化的先决条件。核酸生物合成的扰动可导致细胞死亡。sl23突变体在后脑中未表现出细胞死亡增加或明显的形态学变化。为了确定蛋白质糖基化缺陷是否参与感觉轴突的异常靶向,我们用衣霉素处理野生型胚胎,衣霉素可阻断N-连接的蛋白质糖基化。通过衣霉素处理干扰糖基化模拟了sl23的表型。cad的缺失揭示了蛋白质糖基化在颅感觉神经回路形成中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5d3/3944931/8043c669f710/nihms544080f1.jpg

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