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利用 iPSC 衍生神经元揭示与 Timothy 综合征相关的细胞表型。

Using iPSC-derived neurons to uncover cellular phenotypes associated with Timothy syndrome.

机构信息

Department of Neurobiology, Stanford University School of Medicine, Stanford, California, USA.

出版信息

Nat Med. 2011 Nov 27;17(12):1657-62. doi: 10.1038/nm.2576.

Abstract

Monogenic neurodevelopmental disorders provide key insights into the pathogenesis of disease and help us understand how specific genes control the development of the human brain. Timothy syndrome is caused by a missense mutation in the L-type calcium channel Ca(v)1.2 that is associated with developmental delay and autism. We generated cortical neuronal precursor cells and neurons from induced pluripotent stem cells derived from individuals with Timothy syndrome. Cells from these individuals have defects in calcium (Ca(2+)) signaling and activity-dependent gene expression. They also show abnormalities in differentiation, including decreased expression of genes that are expressed in lower cortical layers and in callosal projection neurons. In addition, neurons derived from individuals with Timothy syndrome show abnormal expression of tyrosine hydroxylase and increased production of norepinephrine and dopamine. This phenotype can be reversed by treatment with roscovitine, a cyclin-dependent kinase inhibitor and atypical L-type-channel blocker. These findings provide strong evidence that Ca(v)1.2 regulates the differentiation of cortical neurons in humans and offer new insights into the causes of autism in individuals with Timothy syndrome.

摘要

单基因神经发育障碍为疾病的发病机制提供了重要的见解,并帮助我们了解特定基因如何控制人类大脑的发育。 Timothy 综合征是由 L 型钙通道 Ca(v)1.2 的错义突变引起的,与发育迟缓和自闭症有关。我们从 Timothy 综合征患者的诱导多能干细胞中生成皮质神经元前体细胞和神经元。这些个体的细胞在钙 (Ca(2+)) 信号和活性依赖性基因表达方面存在缺陷。它们在分化中也表现出异常,包括表达在下皮质层和胼胝体投射神经元的基因表达减少。此外,源自 Timothy 综合征患者的神经元表现出酪氨酸羟化酶的异常表达和去甲肾上腺素和多巴胺的产生增加。这种表型可以通过使用 roscovitine(细胞周期蛋白依赖性激酶抑制剂和非典型 L 型通道阻滞剂)来逆转。这些发现为 Ca(v)1.2 调节人类皮质神经元分化提供了有力证据,并为 Timothy 综合征患者自闭症的病因提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9085/3517299/466a37490c99/nihms332756f1.jpg

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