Institute of Interdisciplinary Research IRIBHM , Université Libre de Bruxelles, Anderlecht, Belgium.
Hum Mol Genet. 2012 Dec 15;21(24):5306-17. doi: 10.1093/hmg/dds386. Epub 2012 Sep 13.
Several genes expressed at the centrosome or spindle pole have been reported to underlie autosomal recessive primary microcephaly (MCPH), a neurodevelopmental disorder consisting of an important brain size reduction present since birth, associated with mild-to-moderate mental handicap and no other neurological feature nor associated malformation. Here, we report a mutation of CASC5 (aka Blinkin, or KNL1, or hSPC105) in MCPH patients from three consanguineous families, in one of which we initially reported the MCPH4 locus. The combined logarithm of odds score of the three families was >6. All patients shared a very rare homozygous mutation of CASC5. The mutation induced skipping of exon 18 with subsequent frameshift and truncation of the predicted protein. CASC5 is part of the KMN network of the kinetochore and is required for proper microtubule attachment to the chromosome centromere and for spindle-assembly checkpoint (SAC) activation during mitosis. Like MCPH gene ASPM, CASC5 is upregulated in the ventricular zone (VZ) of the human fetal brain. CASC5 binds BUB1, BUBR1, ZWINT-1 and interestingly it binds to MIS12 through a protein domain which is truncated by the mutation. CASC5 localized at the equatorial plate like ZWINT-1 and BUBR1, while ASPM, CEP152 and PCTN localized at the spindle poles in our patients and in controls. Comparison of primate and rodent lineages indicates accelerated evolution of CASC5 in the human lineage. Our data provide strong evidence for CASC5 as a novel MCPH gene, and underscore the role of kinetochore integrity in proper volumetric development of the human brain.
几个在中心体或纺锤极表达的基因已被报道为常染色体隐性原发性小头畸形(MCPH)的基础,这是一种神经发育障碍,由出生时存在的重要脑体积减少组成,伴有轻度至中度智力障碍,没有其他神经特征或相关畸形。在这里,我们报告了三个近亲家族的 MCPH 患者的 CASC5(又名 Blinkin,或 KNL1,或 hSPC105)突变,其中一个家族我们最初报告了 MCPH4 基因座。三个家族的联合对数优势评分>6。所有患者均共享 CASC5 的非常罕见的纯合突变。该突变诱导外显子 18 的跳跃,随后移码和预测蛋白的截断。CASC5 是动粒的 KMN 网络的一部分,对于微管正确附着到染色体着丝粒以及纺锤体组装检查点(SAC)在有丝分裂期间的激活是必需的。像 MCPH 基因 ASPM 一样,CASC5 在人类胎儿大脑的脑室区(VZ)上调。CASC5 与 BUB1、BUBR1、ZWINT-1 结合,有趣的是,它通过被突变截断的蛋白结构域与 MIS12 结合。CASC5 像 ZWINT-1 和 BUBR1 一样定位于赤道板,而 ASPM、CEP152 和 PCTN 在我们的患者和对照组中定位于纺锤极。灵长类和啮齿类动物谱系的比较表明,CASC5 在人类谱系中进化加速。我们的数据为 CASC5 作为一个新的 MCPH 基因提供了强有力的证据,并强调了动粒完整性在人类大脑适当体积发育中的作用。