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Mutations in KPTN Cause Macrocephaly Neurodevelopmental Delay and Seizures

机译:KPTN突变导致大头畸形神经发育延迟和癫痫发作

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摘要

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.
机译:在神经形态发生和神经网络形成过程中,神经回路的正确发育关键取决于一系列协调和复杂的分子和细胞信号及反应。尽管已知皮质肌动蛋白的细胞骨架在神经形态发生中起关键作用,但对于这一过程重要的特定分子知之甚少。使用连锁分析和全基因组测序对俄亥俄州阿米什人家庭的样本进行分析,我们证明了编码Kaptin的KPTN突变会导致以大头畸形,神经发育迟缓和癫痫发作为代表的综合征。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标记的蛋白与动态肌动蛋白细胞骨架结构相关联,并且在引入已鉴定的突变后这种关联性消失了。综上所述,我们的研究已经确定了导致大头畸形和神经发育延迟的组织蛋白酶改变,并将组织蛋白酶定义为对正常人神经形态发生至关重要的分子。

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