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首页> 外文期刊>Genome research >Homozygosity mapping and targeted genomic sequencing reveal the gene responsible for cerebellar hypoplasia and quadrupedal locomotion in a consanguineous kindred.
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Homozygosity mapping and targeted genomic sequencing reveal the gene responsible for cerebellar hypoplasia and quadrupedal locomotion in a consanguineous kindred.

机译:纯合性作图和靶向基因组测序揭示了近亲血缘小脑发育不全和四足运动的基因。

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The biological basis for the development of the cerebro-cerebellar structures required for posture and gait in humans is poorly understood. We investigated a large consanguineous family from Turkey exhibiting an extremely rare phenotype associated with quadrupedal locomotion, mental retardation, and cerebro-cerebellar hypoplasia, linked to a 7.1-Mb region of homozygosity on chromosome 17p13.1-13.3. Diffusion weighted imaging and fiber tractography of the patients' brains revealed morphological abnormalities in the cerebellum and corpus callosum, in particular atrophy of superior, middle, and inferior peduncles of the cerebellum. Structural magnetic resonance imaging showed additional morphometric abnormalities in several cortical areas, including the corpus callosum, precentral gyrus, and Brodmann areas BA6, BA44, and BA45. Targeted sequencing of the entire homozygous region in three affected individuals and two obligate carriers uncovered a private missense mutation, WDR81 p.P856L, which cosegregated with the condition in the extended family. The mutation lies in a highly conserved region of WDR81, flanked by an N-terminal BEACH domain and C-terminal WD40 beta-propeller domains. WDR81 is predicted to be a transmembrane protein. It is highly expressed in the cerebellum and corpus callosum, in particular in the Purkinje cell layer of the cerebellum. WDR81 represents the third gene, after VLDLR and CA8, implicated in quadrupedal locomotion in humans.
机译:人体姿势和步态所需的脑小脑结构发育的生物学基础知之甚少。我们调查了一个来自土耳其的近亲大家庭,该家庭表现出与四足运动,智力低下和小脑小脑发育不全相关的极为罕见的表型,与染色体17p13.1-13.3上的纯合性7.1 Mb区有关。患者大脑的弥散加权成像和纤维束成像显示了小脑和call体的形态异常,特别是小脑的上,中和下花梗的萎缩。结构磁共振成像显示在几个皮质区域,包括call体,中央前回和Brodmann区域BA6,BA44和BA45,还有其他形态异常。在三个受影响的个体和两个专职携带者中,对整个纯合子区域进行了靶向测序,发现了一个私人错义突变WDR81 p.P856L,该突变与大家庭中的疾病共同分离。突变位于WDR81的高度保守区域,两侧是N末端BEACH结构域和C末端WD40β-螺旋结构域。 WDR81被预测为跨膜蛋白。它在小脑和call体,特别是在小脑的浦肯野细胞层中高度表达。 WDR81代表了VLDLR和CA8之后的第三个基因,与人类的四足运动有关。

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