Department of Neuromuscular Diseases, UCL Queen Square Institute of Neurology, University College London, London WC1N 3BG, UK.
William Harvey Research Institute, Queen Mary University of London, London EC1M 6BQ, UK.
J Cell Sci. 2020 Mar 30;133(6):jcs242412. doi: 10.1242/jcs.242412.
Signalling by target-derived neurotrophins is essential for the correct development of the nervous system and its maintenance throughout life. Several aspects concerning the lifecycle of neurotrophins and their receptors have been characterised over the years, including the formation, endocytosis and trafficking of signalling-competent ligand-receptor complexes. However, the molecular mechanisms directing the sorting of activated neurotrophin receptors are still elusive. Previously, our laboratory identified Bicaudal-D1 (BICD1), a dynein motor adaptor, as a key factor for lysosomal degradation of brain-derived neurotrophic factor (BDNF)-activated TrkB (also known as NTRK2) and p75 (also known as NGFR) in motor neurons. Here, using a proteomics approach, we identified protein tyrosine phosphatase, non-receptor type 23 (PTPN23), a member of the endosomal sorting complexes required for transport (ESCRT) machinery, in the BICD1 interactome. Molecular mapping revealed that PTPN23 is not a canonical BICD1 cargo; instead, PTPN23 binds the N-terminus of BICD1, which is also essential for the recruitment of cytoplasmic dynein. In line with the BICD1-knockdown phenotype, loss of PTPN23 leads to increased accumulation of BDNF-activated p75 and TrkB in swollen vacuole-like compartments, suggesting that neuronal PTPN23 is a novel regulator of the endocytic sorting of neurotrophin receptors.
靶源性神经营养因子的信号转导对于神经系统的正常发育及其终生维持至关重要。多年来,人们已经研究了神经营养因子及其受体的生命周期的多个方面,包括信号活性配体-受体复合物的形成、内吞作用和运输。然而,指导激活的神经营养因子受体分拣的分子机制仍不清楚。先前,我们实验室鉴定出 Bicaudal-D1(BICD1),一种动力蛋白接头蛋白,是脑源性神经营养因子(BDNF)激活的 TrkB(也称为 NTRK2)和 p75(也称为 NGFR)在运动神经元中溶酶体降解的关键因素。在这里,我们使用蛋白质组学方法,在 BICD1 相互作用组中鉴定出蛋白酪氨酸磷酸酶,非受体型 23(PTPN23),它是内体分选复合物必需的运输(ESCRT)机器的成员。分子作图显示,PTPN23 不是 BICD1 的典型货物;相反,PTPN23 结合 BICD1 的 N 端,这对于细胞质动力蛋白的募集也是必需的。与 BICD1 敲低表型一致,PTPN23 的缺失导致 BDNF 激活的 p75 和 TrkB 在肿胀的空泡样隔室内积累增加,这表明神经元 PTPN23 是神经营养因子受体内吞分选的新型调节剂。