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不同 ADNP 突变体所具有的独特缺陷揭示了异常的细胞质-核串扰。

Distinct Impairments Characterizing Different ADNP Mutants Reveal Aberrant Cytoplasmic-Nuclear Crosstalk.

机构信息

The Elton Laboratory for Molecular Neuroendocrinology, Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Sagol School of Neuroscience and Adams Super Center for Brain Studies, Tel Aviv University, Tel Aviv 6997801, Israel.

出版信息

Cells. 2022 Sep 26;11(19):2994. doi: 10.3390/cells11192994.

Abstract

(1) Background: Activity-dependent neuroprotective protein (ADNP) is essential for neuronal structure and function. Multiple de novo pathological mutations in ADNP cause the autistic ADNP syndrome, and they have been further suggested to affect Alzheimer's disease progression in a somatic form. Here, we asked if different ADNP mutations produce specific neuronal-like phenotypes toward better understanding and personalized medicine. (2) Methods: We employed CRISPR/Cas9 genome editing in N1E-115 neuroblastoma cells to form neuron-like cell lines expressing ADNP mutant proteins conjugated to GFP. These new cell lines were characterized by quantitative morphology, immunocytochemistry and live cell imaging. (3) Results: Our novel cell lines, constitutively expressing GFP-ADNP p.Pro403 (p.Ser404* human orthologue) and GFP-ADNP p.Tyr718* (p.Tyr719* human orthologue), revealed new and distinct phenotypes. Increased neurite numbers (day 1, in culture) and increased neurite lengths upon differentiation (day 7, in culture) were linked with p.Pro403*. In contrast, p.Tyr718* decreased cell numbers (day 1). These discrete phenotypes were associated with an increased expression of both mutant proteins in the cytoplasm. Reduced nuclear/cytoplasmic boundaries were observed in the p.Tyr718* ADNP-mutant line, with this malformation being corrected by the ADNP-derived fragment drug candidate NAP. (4) Conclusions: Distinct impairments characterize different ADNP mutants and reveal aberrant cytoplasmic-nuclear crosstalk.

摘要

(1)背景:活性依赖性神经保护蛋白(ADNP)对神经元的结构和功能至关重要。ADNP 中的多个从头致病性新突变导致了自闭症 ADNP 综合征,并且进一步表明它们以体细胞形式影响阿尔茨海默病的进展。在这里,我们想知道不同的 ADNP 突变是否会产生特定的神经元样表型,以便更好地理解和进行个性化医疗。(2)方法:我们使用 CRISPR/Cas9 基因组编辑技术在 N1E-115 神经母细胞瘤细胞中构建表达与 GFP 融合的 ADNP 突变蛋白的神经元样细胞系。通过定量形态学、免疫细胞化学和活细胞成像对这些新的细胞系进行了表征。(3)结果:我们的新型细胞系,持续表达 GFP-ADNP p.Pro403(人类同源物 p.Ser404*)和 GFP-ADNP p.Tyr718*(人类同源物 p.Tyr719*),显示出全新且独特的表型。增加的神经突数量(培养的第 1 天)和分化时增加的神经突长度(培养的第 7 天)与 p.Pro403相关。相比之下,p.Tyr718减少了细胞数量(第 1 天)。这些离散的表型与细胞质中两种突变蛋白的表达增加有关。在 p.Tyr718* ADNP 突变体系中观察到核/细胞质边界减少,而这种畸形可通过 ADNP 衍生的片段药物候选物 NAP 纠正。(4)结论:不同的 ADNP 突变体具有不同的损伤特征,揭示了异常的细胞质-核串扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcc7/9563912/7a486ca9523e/cells-11-02994-g001.jpg

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