首页> 美国卫生研究院文献>American Journal of Human Genetics >ZNF674: A New Krüppel-Associated Box–Containing Zinc-Finger Gene Involved in Nonsyndromic X-Linked Mental Retardation
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ZNF674: A New Krüppel-Associated Box–Containing Zinc-Finger Gene Involved in Nonsyndromic X-Linked Mental Retardation

机译:ZNF674:一种新的与克虏伯相关的盒相关的锌指基因参与非综合征X连锁精神发育迟滞

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摘要

Array-based comparative genomic hybridization has proven to be successful in the identification of genetic defects in disorders involving mental retardation. Here, we studied a patient with learning disabilities, retinal dystrophy, and short stature. The family history was suggestive of an X-linked contiguous gene syndrome. Hybridization of full-coverage X-chromosomal bacterial artificial chromosome arrays revealed a deletion of ∼1 Mb in Xp11.3, which harbors RP2, SLC9A7, CHST7, and two hypothetical zinc-finger genes, ZNF673 and ZNF674. These genes were analyzed in 28 families with nonsyndromic X-linked mental retardation (XLMR) that show linkage to Xp11.3; the analysis revealed a nonsense mutation, p.E118X, in the coding sequence of ZNF674 in one family. This mutation is predicted to result in a truncated protein containing the Krüppel-associated box domains but lacking the zinc-finger domains, which are crucial for DNA binding. We characterized the complete ZNF674 gene structure and subsequently tested an additional 306 patients with XLMR for mutations by direct sequencing. Two amino acid substitutions, p.T343M and p.P412L, were identified that were not found in unaffected individuals. The proline at position 412 is conserved between species and is predicted by molecular modeling to reduce the DNA-binding properties of ZNF674. The p.T343M transition is probably a polymorphism, because the homologous ZNF674 gene in chimpanzee has a methionine at that position. ZNF674 belongs to a cluster of seven highly related zinc-finger genes in Xp11, two of which (ZNF41 and ZNF81) were implicated previously in XLMR. Identification of ZNF674 as the third XLMR gene in this cluster may indicate a common role for these zinc-finger genes that is crucial to human cognitive functioning.
机译:基于阵列的比较基因组杂交已被证明在鉴定涉及智力低下的疾病中的遗传缺陷方面是成功的。在这里,我们研究了患有学习障碍,视网膜营养不良和身材矮小的患者。家族史提示X连锁连续基因综合征。 X染色体全覆盖细菌人工染色体阵列的杂交显示Xp11.3中缺失了约1 Mb,其中含有RP2,SLC9A7,CHST7和两个假设的锌指基因ZNF673和ZNF674。在28个患有非综合征性X连锁智力低下(XLMR)的家庭中分析了这些基因,这些家族表现出与Xp11.3的连锁关系。分析显示一个家族中ZNF674的编码序列中有一个无意义的突变p.E118X。预计该突变将导致截短的蛋白质,该蛋白质含有与Krüppel相关的盒结构域,但缺少锌指结构域,而锌指结构域对于DNA结合至关重要。我们表征了完整的ZNF674基因结构,随后通过直接测序对另外306例XLMR患者的突变进行了测试。鉴定出在未受影响的个体中未发现的两个氨基酸取代,p.T343M和p.P412L。位置412处的脯氨酸在物种之间是保守的,并且通过分子模型预测可降低ZNF674的DNA结合特性。 p.T343M过渡可能是多态性,因为黑猩猩中的同源ZNF674基因在该位置有一个蛋氨酸。 ZNF674属于Xp11中七个高度相关的锌指基因的簇,其中两个(ZNF41和ZNF81)先前与XLMR有关。 ZNF674被鉴定为该簇中的第三个XLMR基因,可能表明这些锌指基因具有共同的作用,而这对人类的认知功能至关重要。

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