Department of Neurology, Xiangya Hospital, Central South University, Changsha 410008, Hunan, China.
J Neurosci. 2013 May 8;33(19):8172-84. doi: 10.1523/JNEUROSCI.0119-13.2013.
Mutations in the Abelson helper integration site-1 (AHI1) gene result in N-terminal Ahi1 fragments and cause Joubert syndrome, an autosomal recessive brain malformation disorder associated with delayed development. How AHI1 mutations lead to delayed development remains unclear. Here we report that full-length, but not N-terminal, Ahi1 binds Hap1, a huntingtin-associated protein that is essential for the postnatal survival of mice and that this binding is regulated during neuronal differentiation by nerve growth factor. Nerve growth factor induces dephosphorylation of Hap1A and decreases its association with Ahi1, correlating with increased Hap1A distribution in neurite tips. Consistently, Ahi1 associates with phosphorylated Hap1A in cytosolic, but not in synaptosomal, fractions isolated from mouse brain, suggesting that Ahi1 functions mainly in the soma of neurons. Mass spectrometry analysis of cytosolic Ahi1 immunoprecipitates reveals that Ahi1 also binds Cend1 (cell cycle exit and neuronal differentiation protein 1)/BM88, a neuronal protein that mediates neuronal differentiation and is highly expressed in postnatal mouse brain. Loss of Ahi1 reduces the levels of Cend1 in the hypothalamus of Ahi1 KO mice, which show retarded growth during postnatal days. Overexpressed Ahi1 can stabilize Cend1 in cultured cells. Furthermore, overexpression of Cend1 can rescue the neurite extension defects of hypothalamic neurons from Ahi1 KO mice. Our findings suggest that Cend1 is involved in Ahi1-associated hypothalamic neuronal differentiation in early development, giving us fresh insight into the mechanism behind the delayed development in Joubert syndrome.
Abelson 辅助整合位点-1(AHI1)基因突变导致 N 端 Ahi1 片段,并引起常染色体隐性脑畸形病 Joubert 综合征,该疾病与发育迟缓有关。AHI1 突变如何导致发育迟缓仍不清楚。在这里,我们报告全长而非 N 端的 Ahi1 与 Hap1 结合,Hap1 是一种与亨廷顿相关的蛋白,对于小鼠的出生后存活至关重要,并且这种结合在神经元分化过程中受神经生长因子调控。神经生长因子诱导 Hap1A 去磷酸化并减少其与 Ahi1 的结合,与 Hap1A 在神经突尖端的分布增加相关。一致地,Ahi1 与磷酸化的 Hap1A 在从小鼠脑中分离的胞质而非突触体部分结合,表明 Ahi1 主要在神经元的胞体中发挥作用。Ahi1 免疫沉淀的胞质部分的质谱分析表明,Ahi1 还与 Cend1(细胞周期退出和神经元分化蛋白 1)/BM88 结合,Cend1 是一种介导神经元分化并在出生后小鼠脑中高度表达的神经元蛋白。Ahi1 缺失会降低 Ahi1 KO 小鼠下丘脑的 Cend1 水平,导致其在出生后几天生长迟缓。过表达 Ahi1 可以稳定培养细胞中的 Cend1。此外,过表达 Cend1 可以挽救 Ahi1 KO 小鼠下丘脑神经元的神经突延伸缺陷。我们的研究结果表明,Cend1 参与了早期发育中 Ahi1 相关的下丘脑神经元分化,为 Joubert 综合征中发育迟缓的机制提供了新的见解。