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Expression of a Mutant kcnj2 Gene Transcript in Zebrafish

机译:突变的kcnj2基因转录本在斑马鱼中的表达

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摘要

Long QT 7 syndrome (LQT7, also known as Andersen-Tawil syndrome) is a rare autosomal-dominant disorder that causes cardiac arrhythmias, periodic paralysis, and dysmorphic features. Mutations in the human KCNJ2 gene, which encodes for the subunit of the potassium inwardly-rectifying channel (IK1), have been associated with the disorder. The majority of mutations are considered to be dominant-negative as mutant proteins interact to limit the function of wild type KCNJ2 proteins. Several LQT7 syndrome mouse models have been created that vary in the physiological similarity to the human disease. To complement the LQT7 mouse models, we investigated the usefulness of the zebrafish as an alternative model via a transient approach. Initial bioinformatic analysis identified the zebrafish orthologue of the human KCNJ2 gene, together with a spatial expression profile that was similar to that of human. The expression of a kcnj2-12 transcript carrying an in-frame deletion of critical amino acids identified in human studies resulted in embryos that exhibited defects in muscle development, thereby affecting movement, a decrease in jaw size, pupil-pupil distance, and signs of scoliosis. These defects correspond to some phenotypes expressed by human LQT7 patients.
机译:长QT 7综合征(LQT7,也称为Andersen-Tawil综合征)是一种罕见的常染色体显性疾病,可引起心律不齐,周期性麻痹和畸形。编码钾内向整流通道(IK1)亚基的人KCNJ2基因突变与该疾病有关。大多数突变被认为是显性负性的,因为突变蛋白相互作用以限制野生型KCNJ2蛋白的功能。已经创建了几种LQT7综合征小鼠模型,它们与人类疾病的生理相似性各不相同。为了补充LQT7小鼠模型,我们通过瞬时方法研究了斑马鱼作为替代模型的有用性。最初的生物信息学分析确定了人类KCNJ2基因的斑马鱼直向同源物,以及与人类相似的空间表达谱。在人类研究中鉴定出的带有关键氨基酸的框内缺失的kcnj2-12转录物的表达导致胚胎显示出肌肉发育缺陷,从而影响运动,下颌尺寸减小,瞳孔距离和瞳孔缩小迹象脊柱侧弯。这些缺陷对应于人类LQT7患者表达的某些表型。

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