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Nerve growth factor regulates axial rotation during early stages of chick embryo development

机译:神经生长因子调节雏鸡胚胎发育早期的轴向旋转

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摘要

Nerve growth factor (NGF) was discovered because of its neurotrophic actions on sympathetic and sensory neurons in the developing chicken embryo. NGF was subsequently found to influence and regulate the function of many neuronal and non neuronal cells in adult organisms. Little is known, however, about the possible actions of NGF during early embryonic stages. However, mRNAs encoding for NGF and its receptors TrkA and p75NTR are expressed at very early stages of avian embryo development, before the nervous system is formed. The question, therefore, arises as to what might be the functions of NGF in early chicken embryo development, before its well-established actions on the developing sympathetic and sensory neurons. To investigate possible roles of NGF in the earliest stages of development, stage HH 11–12 chicken embryos were injected with an anti-NGF antibody (mAb αD11) that binds mature NGF with high affinity. Treatment with anti-NGF, but not with a control antibody, led to a dose-dependent inversion of the direction of axial rotation. This effect of altered rotation after anti NGF injection was associated with an increased cell death in somites. Concurrently, a microarray mRNA expression analysis revealed that NGF neutralization affects the expression of genes linked to the regulation of development or cell proliferation. These results reveal a role for NGF in early chicken embryo development and, in particular, in the regulation of somite survival and axial rotation, a crucial developmental process linked to left–right asymmetry specification.
机译:发现神经生长因子(NGF)是因为它对发育中的鸡胚中的交感神经和感觉神经元具有神经营养作用。随后发现NGF影响和调节成年生物中许多神经元和非神经元细胞的功能。然而,关于NGF在胚胎早期的可能作用知之甚少。然而,在神经系统形成之前,编码NGF及其受体TrkA和p75 NTR 的mRNA在禽胚胎发育的非常早期就表达了。因此,在NGF对发育中的交感神经和感觉神经元起作用之前,NGF在早期鸡胚发育中的功能可能是一个问题。为了研究NGF在早期发育阶段的可能作用,在HH 11-12期鸡胚中注射了抗NGF抗体(mAbαD11),该抗体以高亲和力结合成熟的NGF。用抗NGF而不是对照抗体进行治疗会导致轴向旋转方向的剂量依赖性反转。抗NGF注射后旋转改变的这种效应与体节中细胞死亡的增加有关。同时,微阵列mRNA表达分析显示NGF中和会影响与发育或细胞增殖调控相关的基因表达。这些结果揭示了NGF在早期鸡胚发育中的作用,特别是在调节somite存活和轴向旋转方面,这是与左右不对称性规格相关的至关重要的发育过程。

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