异位表达HOXA5可导致浅表背角神经元的异常分化、迁移和p53非依赖性细胞死亡

Matthew A. Abbott, Milan Joksimovic, Christopher K. Tuggle
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引用次数: 6

摘要

先前,我们报道了一种小鼠(Hoxa5SV2)在发育中的颈和臂背脊髓中异位表达HOXA5。来自这一品系的动物表现出成熟背角外层细胞的明显缺失,这与前肢感觉和运动缺陷的成年表型相吻合。在本报告中,我们检查了背角细胞丢失的病因。在Hoxa5SV2转基因中,通常注定要填充背角外层I-III的细胞不适当地迁移,因为背角侧位细胞的百分比显着降低。在Hoxa5SV2动物中,细胞凋亡是细胞丢失的主要原因,而神经元的增殖不受影响。尽管Hoxa5在体外已被证明可以调节p53的表达并引起p53依赖性的细胞凋亡,但在体内,Hoxa5SV2小鼠中出现的不适当的细胞凋亡或运动神经元的正常死亡并不需要p53。正常的细胞凋亡不依赖于Hoxa5,因为在Hoxa5缺失的动物中,腹角运动神经元的凋亡水平没有改变。作为背神经元异常迁移和/或凋亡的可能原因,细胞类型标记物的错误表达被证实。此外,突变体的层状标记物的表达模式发生了改变,感觉纤维异常地穿透了外层。我们的证据表明,Hoxa5SV2突变体的背角神经元丢失是由于背角神经元标记物的错误表达、异常迁移和不适当的凋亡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ectopic HOXA5 expression results in abnormal differentiation, migration and p53-independent cell death of superficial dorsal horn neurons

Previously, we reported a line of mice (Hoxa5SV2) that ectopically expresses HOXA5 in the developing cervical and brachial dorsal spinal cord. Animals from this line exhibited a clear loss of cells in the outer lamina of the mature dorsal horn that coincided with an adult phenotype of sensory and motor defects of the forelimb. In this report, we examined the etiology of lost dorsal horn cells. Cells normally fated to populate the outer laminae I–III of the dorsal horn migrated inappropriately, as the percentage of laterally positioned cells in the dorsal horn was significantly reduced in Hoxa5SV2 transgenics. Apoptosis was a major cause of cell loss while proliferation of neurons was not affected in Hoxa5SV2 animals. Although Hoxa5 has been shown in vitro to regulate p53 expression and cause p53-dependent apoptosis, p53 was not required in vivo for the inappropriate apoptosis seen in Hoxa5SV2 mice, or for the normal death of motor neurons. Normal apoptosis is not dependent on Hoxa5, as the level of ventral horn motor neuron apoptosis was not changed in Hoxa5 null animals. As a possible cause of aberrant migration and/or apoptosis of dorsal neurons, misexpression of cell type markers was demonstrated. Further, the expression pattern of laminar markers was altered and sensory fibers aberrantly penetrated the outer lamina of mutants. Our evidence suggests that the loss of dorsal horn neurons in Hoxa5SV2 mutants was due to misexpression of dorsal horn neuronal markers, aberrant migration, and inappropriate apoptosis.

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