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KPTN 基因突变可导致大头畸形、神经发育迟缓及癫痫。

Mutations in KPTN cause macrocephaly, neurodevelopmental delay, and seizures.

机构信息

Monogenic Molecular Genetics, University of Exeter Medical School, St. Luke's Campus, Magdalen Road, Exeter EX1 2LU, UK.

Institute for Biochemistry I, Jena University Hospital and Friedrich Schiller University Jena, D-07743 Jena, Germany.

出版信息

Am J Hum Genet. 2014 Jan 2;94(1):87-94. doi: 10.1016/j.ajhg.2013.10.001. Epub 2013 Nov 14.

Abstract

The proper development of neuronal circuits during neuromorphogenesis and neuronal-network formation is critically dependent on a coordinated and intricate series of molecular and cellular cues and responses. Although the cortical actin cytoskeleton is known to play a key role in neuromorphogenesis, relatively little is known about the specific molecules important for this process. Using linkage analysis and whole-exome sequencing on samples from families from the Amish community of Ohio, we have demonstrated that mutations in KPTN, encoding kaptin, cause a syndrome typified by macrocephaly, neurodevelopmental delay, and seizures. Our immunofluorescence analyses in primary neuronal cell cultures showed that endogenous and GFP-tagged kaptin associates with dynamic actin cytoskeletal structures and that this association is lost upon introduction of the identified mutations. Taken together, our studies have identified kaptin alterations responsible for macrocephaly and neurodevelopmental delay and define kaptin as a molecule crucial for normal human neuromorphogenesis.

摘要

在神经形态发生和神经元网络形成过程中,神经元回路的正常发育严重依赖于协调和复杂的一系列分子和细胞线索和反应。尽管皮质肌动蛋白细胞骨架在神经形态发生中起着关键作用,但对于这一过程中重要的特定分子却知之甚少。利用俄亥俄州阿米什社区家族的样本进行连锁分析和全外显子组测序,我们已经证明,编码 kaptin 的 KPTN 基因突变会导致以大头畸形、神经发育迟缓和癫痫发作为特征的综合征。我们在原代神经元细胞培养物中的免疫荧光分析表明,内源性和 GFP 标记的 kaptin 与动态肌动蛋白细胞骨架结构结合,而这种结合在引入鉴定出的突变时会丢失。总之,我们的研究已经确定了导致大头畸形和神经发育迟缓的 kaptin 改变,并将 kaptin 定义为正常人类神经形态发生的关键分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7071/3882725/6b38b10cd5c1/gr1.jpg

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