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BDNF pro-peptide regulates dendritic spines via caspase-3

机译:BDNF前肽通过caspase-3调节树突棘

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摘要

The precursor of brain-derived neurotrophic factor (BDNF) (proBDNF) is enzymatically cleaved, by either intracellular (furin/PC1) or extracellular proteases (tPA/plasmin/MMP), to generate mature BDNF (mBDNF) and its pro-peptide (BDNF pro-peptide). Little is known about the function of BDNF pro-peptide. We have developed an antibody that specifically detects cleaved BDNF pro-peptide, but not proBDNF or mBDNF. Neuronal depolarization elicited a marked increase in extracellular BDNF pro-peptide, suggesting activity-dependent regulation of its extracellular levels. Exposure of BDNF pro-peptide to mature hippocampal neurons in culture dramatically reduced dendritic spine density. This effect was mediated by caspase-3, as revealed by studies with pharmacological inhibitors and genetic knockdown. BDNF pro-peptide also increased the number of ‘elongated' mitochondria and cytosolic cytochrome c, suggesting the involvement of mitochondrial-caspase-3 pathway. These results, along with BDNF pro-peptide effects recently reported on growth cones and long-term depression (LTD), suggest that BDNF pro-peptide is a negative regulator of neuronal structure and function.
机译:脑源性神经营养因子(BDNF)(proBDNF)的前体被细胞内(furin / PC1)或细胞外蛋白酶(tPA / plasmin / MMP)酶解,生成成熟的B​​DNF(mBDNF)及其前肽( BDNF前肽)。关于BDNF前肽的功能知之甚少。我们已经开发出一种抗体,可特异性检测裂解的BDNF前肽,但不检测proBDNF或mBDNF。神经元去极化引起细胞外BDNF前肽的显着增加,表明其细胞外水平的活性依赖调节。将BDNF前肽暴露于培养物中成熟的海马神经元会显着降低树突棘密度。药理学抑制剂和基因敲除研究表明,这种作用是由caspase-3介导的。 BDNF前肽还增加了“延长的”线粒体和胞质细胞色素c的数量,表明线粒体caspase-3途径的参与。这些结果以及最近在生长锥和长期抑郁症(LTD)上报道的BDNF前肽作用表明BDNF前肽是神经元结构和功能的负调节剂。

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