Tropomyosin receptor kinase B(TrkB)signaling plays a pivotal role in dendritic growth and dendritic spine formation to promote learning and memory.The activity-dependent release of brain-derived neurotrophic factor at...Tropomyosin receptor kinase B(TrkB)signaling plays a pivotal role in dendritic growth and dendritic spine formation to promote learning and memory.The activity-dependent release of brain-derived neurotrophic factor at synapses binds to pre-or postsynaptic TrkB resulting in the strengthening of synapses,reflected by long-term potentiation.Postsynaptically,the association of postsynaptic density protein-95 with TrkB enhances phospholipase Cγ-Ca^(2+)/calmodulin-dependent protein kinaseⅡand phosphatidylinositol 3-kinase-mechanistic target of rapamycin signaling required for long-term potentiation.In this review,we discuss TrkB-postsynaptic density protein-95 coupling as a promising strategy to magnify brain-derived neurotrophic factor signaling towards the development of novel therapeutics for specific neurological disorders.A reduction of TrkB signaling has been observed in neurodegenerative disorders,such as Alzheimer's disease and Huntington's disease,and enhancement of postsynaptic density protein-95 association with TrkB signaling could mitigate the observed deficiency of neuronal connectivity in schizophrenia and depression.Treatment with brain-derived neurotrophic factor is problematic,due to poor pharmacokinetics,low brain penetration,and side effects resulting from activation of the p75 neurotrophin receptor or the truncated TrkB.T1 isoform.Although TrkB agonists and antibodies that activate TrkB are being intensively investigated,they cannot distinguish the multiple human TrkB splicing isoforms or cell type-specific functions.Targeting TrkB–postsynaptic density protein-95 coupling provides an alternative approach to specifically boost TrkB signaling at localized synaptic sites versus global stimulation that risks many adverse side effects.展开更多
目的:研究三七通舒胶囊有效成分三七三醇皂苷对大鼠脑梗死后不同时点Syp和PSD-95表达的影响,为探讨脑功能重塑的机理提供理论依据。方法:健康雄性SD大鼠,分为手术和正常组,手术组采用改良的Longa方法制备大鼠大脑中动脉阻塞模型,分为模...目的:研究三七通舒胶囊有效成分三七三醇皂苷对大鼠脑梗死后不同时点Syp和PSD-95表达的影响,为探讨脑功能重塑的机理提供理论依据。方法:健康雄性SD大鼠,分为手术和正常组,手术组采用改良的Longa方法制备大鼠大脑中动脉阻塞模型,分为模型组、三七三醇皂苷组和尼莫地平组,于术后3 d、7 d和28 d 3个时间点利用免疫组化及图像分析测定大鼠脑内Syp和PSD-95的表达。结果:术后28 d三七三醇皂苷组和尼莫地平组较模型组的Syp表达上升显著(P<0.01),PSD-95表达上升亦显著(P<0.05和P<0.01),且前两者较自身3 d、7 d Syp和PSD-95表达均有显著升高(P<0.01)。结论:三七三醇皂苷可以促进大鼠脑梗死后不同时点Syp和PSD-95表达,即突触的重塑过程,对大脑功能重塑有积极作用。展开更多
目的观察小鼠学习记忆能力及其海马区突触功能相关蛋白脑源性神经营养因子(brain-derived neurotrophic factor,BDNF)、突触后致密蛋白95(postsynaptic density protein 95,PSD95)及GluA1表达的增龄性变化。方法观察10周龄(青年组)和21...目的观察小鼠学习记忆能力及其海马区突触功能相关蛋白脑源性神经营养因子(brain-derived neurotrophic factor,BDNF)、突触后致密蛋白95(postsynaptic density protein 95,PSD95)及GluA1表达的增龄性变化。方法观察10周龄(青年组)和21月龄(老年组)C57BL/6雄性小鼠Morris水迷宫训练和测试表现,并应用Western blot技术检测两组小鼠海马区BDNF、PSD95、GluA1的蛋白表达。结果与青年组相比,老年组小鼠水迷宫测试中的学习记忆能力明显下降(P均<0.05),其海马区总蛋白BDNF、PSD95、GluA1的表达量均显著下降(P均<0.05),海马区膜蛋白GluA1的表达量也明显下降(P<0.05)。结论老年小鼠学习记忆能力下降伴随着海马区突触功能相关蛋白BDNF、PSD95、GluA1表达的一致下降。展开更多
目的探讨戊四氮点燃癫痫对大鼠空间学习记忆的影响及可能的分子机制。方法戊四氮(pentylenetet-razol,PTZ)点燃建立慢性癫痫(chronic epileptic,CEP)模型,Morris水迷宫进行行为学检测,免疫组织化学方法观察大鼠海马CA1、CA3区突触素(syn...目的探讨戊四氮点燃癫痫对大鼠空间学习记忆的影响及可能的分子机制。方法戊四氮(pentylenetet-razol,PTZ)点燃建立慢性癫痫(chronic epileptic,CEP)模型,Morris水迷宫进行行为学检测,免疫组织化学方法观察大鼠海马CA1、CA3区突触素(synaptophysin,P38)和突触后致密物95(postsynaptic density 95,PSD-95)的表达,并用计算机图像分析系统对免疫反应结果进行处理。结果水迷宫试验检测癫痫组大鼠空间学习记忆能力受损;免疫组化结果表明其海马CA1、CA3区P38和PSD-95免疫反应产物较对照组明显减少(P<0.01,P<0.05)。结论戊四氮点燃癫痫大鼠伴有学习记忆功能减退,其海马神经元P38和PSD-95的表达减少可能参与了空间学习记忆受损。展开更多
基金supported by Postdoc Fellowship from the Foundation for Angelman Syndrome Therapeutics(FT2022-005 to JM,PD2023-001 to XY,and FT2024-001 to YAH)STTR R41 MH118747(to JM)。
文摘Tropomyosin receptor kinase B(TrkB)signaling plays a pivotal role in dendritic growth and dendritic spine formation to promote learning and memory.The activity-dependent release of brain-derived neurotrophic factor at synapses binds to pre-or postsynaptic TrkB resulting in the strengthening of synapses,reflected by long-term potentiation.Postsynaptically,the association of postsynaptic density protein-95 with TrkB enhances phospholipase Cγ-Ca^(2+)/calmodulin-dependent protein kinaseⅡand phosphatidylinositol 3-kinase-mechanistic target of rapamycin signaling required for long-term potentiation.In this review,we discuss TrkB-postsynaptic density protein-95 coupling as a promising strategy to magnify brain-derived neurotrophic factor signaling towards the development of novel therapeutics for specific neurological disorders.A reduction of TrkB signaling has been observed in neurodegenerative disorders,such as Alzheimer's disease and Huntington's disease,and enhancement of postsynaptic density protein-95 association with TrkB signaling could mitigate the observed deficiency of neuronal connectivity in schizophrenia and depression.Treatment with brain-derived neurotrophic factor is problematic,due to poor pharmacokinetics,low brain penetration,and side effects resulting from activation of the p75 neurotrophin receptor or the truncated TrkB.T1 isoform.Although TrkB agonists and antibodies that activate TrkB are being intensively investigated,they cannot distinguish the multiple human TrkB splicing isoforms or cell type-specific functions.Targeting TrkB–postsynaptic density protein-95 coupling provides an alternative approach to specifically boost TrkB signaling at localized synaptic sites versus global stimulation that risks many adverse side effects.
文摘目的:研究三七通舒胶囊有效成分三七三醇皂苷对大鼠脑梗死后不同时点Syp和PSD-95表达的影响,为探讨脑功能重塑的机理提供理论依据。方法:健康雄性SD大鼠,分为手术和正常组,手术组采用改良的Longa方法制备大鼠大脑中动脉阻塞模型,分为模型组、三七三醇皂苷组和尼莫地平组,于术后3 d、7 d和28 d 3个时间点利用免疫组化及图像分析测定大鼠脑内Syp和PSD-95的表达。结果:术后28 d三七三醇皂苷组和尼莫地平组较模型组的Syp表达上升显著(P<0.01),PSD-95表达上升亦显著(P<0.05和P<0.01),且前两者较自身3 d、7 d Syp和PSD-95表达均有显著升高(P<0.01)。结论:三七三醇皂苷可以促进大鼠脑梗死后不同时点Syp和PSD-95表达,即突触的重塑过程,对大脑功能重塑有积极作用。
文摘目的观察小鼠学习记忆能力及其海马区突触功能相关蛋白脑源性神经营养因子(brain-derived neurotrophic factor,BDNF)、突触后致密蛋白95(postsynaptic density protein 95,PSD95)及GluA1表达的增龄性变化。方法观察10周龄(青年组)和21月龄(老年组)C57BL/6雄性小鼠Morris水迷宫训练和测试表现,并应用Western blot技术检测两组小鼠海马区BDNF、PSD95、GluA1的蛋白表达。结果与青年组相比,老年组小鼠水迷宫测试中的学习记忆能力明显下降(P均<0.05),其海马区总蛋白BDNF、PSD95、GluA1的表达量均显著下降(P均<0.05),海马区膜蛋白GluA1的表达量也明显下降(P<0.05)。结论老年小鼠学习记忆能力下降伴随着海马区突触功能相关蛋白BDNF、PSD95、GluA1表达的一致下降。
文摘目的探讨戊四氮点燃癫痫对大鼠空间学习记忆的影响及可能的分子机制。方法戊四氮(pentylenetet-razol,PTZ)点燃建立慢性癫痫(chronic epileptic,CEP)模型,Morris水迷宫进行行为学检测,免疫组织化学方法观察大鼠海马CA1、CA3区突触素(synaptophysin,P38)和突触后致密物95(postsynaptic density 95,PSD-95)的表达,并用计算机图像分析系统对免疫反应结果进行处理。结果水迷宫试验检测癫痫组大鼠空间学习记忆能力受损;免疫组化结果表明其海马CA1、CA3区P38和PSD-95免疫反应产物较对照组明显减少(P<0.01,P<0.05)。结论戊四氮点燃癫痫大鼠伴有学习记忆功能减退,其海马神经元P38和PSD-95的表达减少可能参与了空间学习记忆受损。