首页> 美国卫生研究院文献>The Journal of Neuroscience >Variant Brain-Derived Neurotrophic Factor (BDNF) (Met66) Alters the Intracellular Trafficking and Activity-Dependent Secretion of Wild-Type BDNF in Neurosecretory Cells and Cortical Neurons
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Variant Brain-Derived Neurotrophic Factor (BDNF) (Met66) Alters the Intracellular Trafficking and Activity-Dependent Secretion of Wild-Type BDNF in Neurosecretory Cells and Cortical Neurons

机译:变异的脑源性神经营养因子(BDNF)(Met66)改变神经分泌细胞和皮质神经元中野生型BDNF的细胞内运输和活性依赖性分泌。

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摘要

Brain-derived neurotrophic factor (BDNF) plays a critical role in nervous system and cardiovascular development and function. Recently, a common single nucleotide polymorphism in the bdnf gene, resulting in a valine to methionine substitution in the prodomain (BDNFMet), has been shown to lead to memory impairment and susceptibility to neuropsychiatric disorders in humans heterozygous for the variant BDNF. When expressed by itself in hippocampal neurons, less BDNFMet is secreted in an activity-dependent manner. The nature of the cellular defect when both BDNFMet and wild-type BDNF (BDNFVal) are present in the same cell is not known. Given that this is the predominant expression profile in humans, we examined the effect of coexpressed BDNFMet on BDNFVal intracellular trafficking and processing. Our data indicate that abnormal trafficking of BDNFMet occurred only in neuronal and neurosecretory cells and that BDNFMet could alter the intracellular distribution and activity-dependent secretion of BDNFVal. We determined that, when coexpressed in the same cell, ∼70% of the variant BDNF forms BDNFVal·BDNFMet heterodimers, which are inefficiently sorted into secretory granules resulting in a quantitative decreased secretion. Finally, we determined the form of BDNF secreted in an activity-dependent manner and observed no differences in the forms of BDNFMet or the BDNFVal·BDNFMet heterodimer compared with BDNFVal. Together, these findings indicate that components of the regulated secretory machinery interacts specifically with a signal in the BDNF prodomain and that perturbations in BDNF trafficking may lead to selective impairment in CNS function.
机译:脑源性神经营养因子(BDNF)在神经系统以及心血管的发育和功能中起关键作用。最近,已显示出bdnf基因中常见的单核苷酸多态性,导致前结构域中的缬氨酸被蛋氨酸取代(BDNFMet),已导致对BDNF杂合子的人的记忆障碍和神经精神疾病易感性。当其自身在海马神经元中表达时,以活动依赖的方式分泌的BDNFMet较少。当BDNFMet和野生型BDNF(BDNFVal)同时存在于同一细胞中时,细胞缺陷的性质尚不清楚。鉴于这是人类中最主要的表达谱,我们检查了共表达的BDNFMet对BDNFVal细胞内运输和加工的影响。我们的数据表明BDNFMet的异常贩运仅发生在神经元和神经分泌细胞中,并且BDNFMet可以改变BDNFVal的细胞内分布和活性依赖性分泌。我们确定,当在同一细胞中共表达时,约70%的BDNF变异体会形成BDNFVal·BDNFMet异二聚体,这些异二聚体无法有效地分类到分泌颗粒中,从而导致分泌量下降。最后,我们确定了以活性依赖性方式分泌的BDNF的形式,与BDNFVal相比,BDNFMet或BDNFVal·BDNFMet异二聚体的形式没有差异。总之,这些发现表明受调节的分泌机制的成分与BDNF前域中的信号特异性相互作用,并且BDNF贩运中的扰动可能导致CNS功能的选择性损伤。

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