首页> 外文期刊>The Journal of Comparative Neurology >Expression of neurturin, GDNF, and their receptors in the adult mouse CNS.
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Expression of neurturin, GDNF, and their receptors in the adult mouse CNS.

机译:神经营养素,GDNF及其受体在成年小鼠CNS中的表达。

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Neurturin (NTN) and glial cell line-derived neurotrophic factor (GDNF) are the first two members of the GDNF family (GF) of neurotrophic factors. These two proteins are potent survival factors for several populations of central and peripheral neurons in mature and developing rodents. The receptor for these factors is a multicomponent complex that includes the RET (rearranged during transfection) tyrosine kinase receptor and one of two glycosyl phosphatidylinositol (GPI)-linked ligand-binding components called GDNF family receptor alphas (GFRalpha-1 and GFRalpha-2). We have used in situ hybridization to study the mRNA expression of NTN, GDNF, RET, GFRalpha-1, and GFRalpha-2 in the central nervous system (CNS) of adult mice. GF receptors are expressed in several areas in which neuronal populations known to respond to NTN and GDNF are located, including the ventral horn of the spinal cord and the compacta region of the substantia nigra. In addition, we have demonstrated receptor expression in other areas of the brain including the thalamus and hypothalamus. Neurons in these areas express GF receptors, and therefore, may respond to NTN or GDNF. NTN and GDNF are expressed in targets of neurons that express GF receptors. The pattern of GF factor and receptor expression in the adult brain suggests a role for these factors in maintaining neuronal circuits in the mature CNS.
机译:神经营养素(NTN)和神经胶质细胞源性神经营养因子(GDNF)是神经营养因子GDNF家族(GF)的前两个成员。这两种蛋白质是成熟和发育中的啮齿动物中若干中央和周围神经元种群的有效存活因子。这些因子的受体是一种多组分复合物,包括RET(转染过程中重新排列)酪氨酸激酶受体和两个与糖基磷脂酰肌醇(GPI)连接的配体结合组分之一,称为GDNF家族受体alphas(GFRalpha-1和GFRalpha-2)。 。我们已经使用原位杂交来研究成年小鼠中枢神经系统(CNS)中NTN,GDNF,RET,GFRalpha-1和GFRalpha-2的mRNA表达。 GF受体在已知对NTN和GDNF响应的神经元群体所在的几个区域表达,包括脊髓的腹角和黑质的致密区。此外,我们已证明受体在大脑其他区域(包括丘脑和下丘脑)的表达。这些区域的神经元表达GF受体,因此可能对NTN或GDNF产生反应。 NTN和GDNF在表达GF受体的神经元靶标中表达。成年大脑中GF因子和受体表达的模式提示这些因子在维持成熟CNS中神经元回路中的作用。

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