Chen Zhe-Yu, Ieraci Alessandro, Teng Henry, Dall Henning, Meng Chui-Xiang, Herrera Daniel G, Nykjaer Anders, Hempstead Barbara L, Lee Francis S
Department of Psychiatry, Department of Medicine, Weill Medical College of Cornell University, New York, New York 10021, USA.
J Neurosci. 2005 Jun 29;25(26):6156-66. doi: 10.1523/JNEUROSCI.1017-05.2005.
Brain-derived neurotrophic factor (BDNF), after activity-dependent secretion from neurons, modulates critical nervous system functions. Recently, a variant in the human bdnf gene, resulting in a valine to methionine substitution in the prodomain, has been shown to lead to defective regulated secretion from neurons and memory impairment. Here, we report a novel function for a Vps10p domain protein, sortilin, in controlling BDNF sorting to the regulated secretory pathway. Sortilin interacts specifically with BDNF in a region encompassing the methionine substitution and colocalizes with BDNF in secretory granules in neurons. A truncated form of sortilin causes BDNF missorting to the constitutive secretory pathway without affecting neurotrophin-4 (NT-4) secretion. In addition, sortilin small interfering RNA introduced into primary neurons also led to BDNF missorting from the regulated to the constitutive secretory pathway. Together, these data suggest a mechanism to understand the defect associated with variant BDNF and provide a framework, based on divergent presynaptic regulation of sorting to secretory pathways, to explain how two ligands for tropomyosin-related kinase B, BDNF and NT-4, can mediate diverse biological responses.
脑源性神经营养因子(BDNF)在神经元进行活动依赖性分泌后,可调节关键的神经系统功能。最近研究发现,人类bdnf基因的一个变体导致前结构域中的缬氨酸被甲硫氨酸取代,已证明该变体可导致神经元调节性分泌缺陷和记忆障碍。在此,我们报告了Vps10p结构域蛋白sortilin在控制BDNF分选至调节性分泌途径中的一种新功能。Sortilin在包含甲硫氨酸取代的区域与BDNF特异性相互作用,并与神经元分泌颗粒中的BDNF共定位。Sortilin的截短形式会导致BDNF错误分选至组成型分泌途径,而不影响神经营养因子-4(NT-4)的分泌。此外,导入原代神经元的sortilin小干扰RNA也会导致BDNF从调节性分泌途径错误分选至组成型分泌途径。这些数据共同提示了一种机制,有助于理解与BDNF变体相关的缺陷,并基于分泌途径分选的不同突触前调节提供一个框架,以解释原肌球蛋白相关激酶B的两种配体BDNF和NT-4如何介导不同的生物学反应。