Institute of Biochemistry I, Jena University Hospital-Friedrich Schiller University Jena, Jena, Germany.
EMBO J. 2011 Sep 16;30(24):4955-69. doi: 10.1038/emboj.2011.339.
Synaptic transmission relies on effective and accurate compensatory endocytosis. F-BAR proteins may serve as membrane curvature sensors and/or inducers and thereby support membrane remodelling processes; yet, their in vivo functions urgently await disclosure. We demonstrate that the F-BAR protein syndapin I is crucial for proper brain function. Syndapin I knockout (KO) mice suffer from seizures, a phenotype consistent with excessive hippocampal network activity. Loss of syndapin I causes defects in presynaptic membrane trafficking processes, which are especially evident under high-capacity retrieval conditions, accumulation of endocytic intermediates, loss of synaptic vesicle (SV) size control, impaired activity-dependent SV retrieval and defective synaptic activity. Detailed molecular analyses demonstrate that syndapin I plays an important role in the recruitment of all dynamin isoforms, central players in vesicle fission reactions, to the membrane. Consistently, syndapin I KO mice share phenotypes with dynamin I KO mice, whereas their seizure phenotype is very reminiscent of fitful mice expressing a mutant dynamin. Thus, syndapin I acts as pivotal membrane anchoring factor for dynamins during regeneration of SVs.
突触传递依赖于有效和准确的补偿性胞吞作用。F-BAR 蛋白可作为膜曲率传感器和/或诱导剂,从而支持膜重塑过程;然而,它们在体内的功能亟待揭示。我们证明 F-BAR 蛋白 syndapin I 对大脑功能至关重要。 syndapin I 敲除 (KO) 小鼠患有癫痫发作,这一表型与海马网络过度活动一致。 syndapin I 的缺失导致突触前膜运输过程的缺陷,尤其是在高容量检索条件下,内吞中间产物的积累、突触小泡 (SV) 大小控制的丧失、活性依赖的 SV 回收受损和突触活动缺陷。详细的分子分析表明, syndapin I 在招募所有的胞质动力蛋白同工酶(参与囊泡分裂反应的核心因子)到膜上起着重要作用。一致地, syndapin I KO 小鼠与 dynamin I KO 小鼠具有相似的表型,而它们的癫痫发作表型与表达突变 dynamin 的 fitful 小鼠非常相似。因此, syndapin I 作为 SV 再生过程中 dynamin 的关键膜锚定因子。