Differential expression of RET and GDNF family receptor, GFR-α1, between striatum and substantia nigra following nigrostriatal lesion: A case for diminished GDNF-signaling

胶质细胞源性神经生长因子 黑质 纹状体 酪氨酸羟化酶 神经营养因子 黑质纹状体通路 内分泌学 内科学 多巴胺 GDNF配体家族 医学 神经科学 多巴胺能 受体 生物
作者
Ella A. Kasanga,Yoonhee Han,Walter Navarrete,Robert McManus,Marla K. Shifflet,Caleb Parry,Arturo Barahona,Fredric P. Manfredsson,Vicki A. Nejtek,Jason R. Richardson,Marco Salvatore
出处
期刊:Experimental Neurology [Elsevier]
卷期号:366: 114435-114435 被引量:3
标识
DOI:10.1016/j.expneurol.2023.114435
摘要

Although glial cell line-derived neurotrophic factor (GDNF) showed efficacy in preclinical and early clinical studies to alleviate parkinsonian signs in Parkinson's disease (PD), later trials did not meet primary endpoints, giving pause to consider further investigation. While GDNF dose and delivery methods may have contributed to diminished efficacy, one crucial aspect of these clinical studies is that GDNF treatment began ∼8 years after PD diagnosis; a time point representing several years after near 100% depletion of nigrostriatal dopamine markers in striatum and at least 50% in substantia nigra (SN), which represents a time point of initiating GDNF treatment later than reported in some preclinical studies. With nigrostriatal terminal loss exceeding 70% at PD diagnosis, we utilized hemiparkinsonian rats to determine if expression of GDNF family receptor, GFR-α1, and receptor tyrosine kinase, RET, differed between striatum and SN at 1 and 4 weeks following a 6-hydroxydopamine (6-OHDA) hemilesion. Whereas GDNF expression changed minimally, GFR-α1 expression decreased progressively in striatum and in tyrosine hydroxylase positive (TH+) cells in SN, correlating with reduced TH cell number. However, in nigral astrocytes, GFR-α1 expression increased. RET expression decreased maximally in striatum by 1 week, whereas in the SN, a transient bilateral increase occurred, returning to control levels by 4 weeks. Expression of brain-derived neurotrophic factor (BDNF) or its receptor, TrkB, were unchanged throughout lesion progression. Together, these results reveal that differential GFR-α1 and RET expression between the striatum and SN, and cell-specific differences in GFR-α1 expression in SN, occur during nigrostriatal neuron loss. Targeting loss of GDNF receptors thus appears critical to enhance GDNF therapeutic efficacy against nigrostriatal neuron loss. Although preclinical evidence supports that GDNF provides neuroprotection and improves locomotor function in preclinical studies, there is uncertainty if it can alleviate motor impairment in Parkinson's disease patients. Using the established 6-OHDA hemiparkinsonian rat model, we determined whether expression of its cognate receptors, GFR-α1 and RET, were differentially affected between striatum and substantia nigra in a timeline study. In striatum, there was early and significant loss of RET, but a gradual, progressive loss of GFR-α1. In contrast, RET transiently increased in lesioned substantia nigra, but GFR-α1 progressively decreased only in nigrostriatal neurons and correlated with TH cell loss. Our results indicate that direct availability of GFR-α1 may be a critical element that determines GDNF efficacy following striatal delivery.

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