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首页> 外文期刊>BMC Molecular Biology >Functional analysis of human mutations in homeodomain transcription factor PITX3
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Functional analysis of human mutations in homeodomain transcription factor PITX3

机译:同源结构域转录因子PITX3中人类突变的功能分析

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Background The homeodomain-containing transcription factor PITX3 was shown to be essential for normal eye development in vertebrates. Human patients with point mutations in PITX3 demonstrate congenital cataracts along with anterior segment defects in some cases when one allele is affected and microphthalmia with brain malformations when both copies are mutated. The functional consequences of these human mutations remain unknown. Results We studied the PITX3 mutant proteins S13N and G219fs to determine the type and severity of functional defects. Our results demonstrate alterations in DNA-binding profiles and/or transactivation activities and suggest a partial loss-of-function in both mutants with the G219fs form being more severely affected. No anomalies in cellular distribution and no dominant-negative effects were discovered for these mutants. Interestingly, the impairment of the G219fs activity varied between different ocular cell lines. Conclusion The G219fs mutation was found in multiple families affected with congenital cataracts along with anterior segment malformations in many members. Our data suggest that the presence/severity of anterior segment defects in families affected with G219fs may be determined by secondary factors that are expressed in the developing anterior segment structures and may modify the effect(s) of this mutation. The S13N mutant showed only minor alteration of transactivation ability and DNA binding pattern and may represent a rare polymorphism in the PITX3 gene. A possible contribution of this mutation to human disease needs to be further investigated.
机译:背景显示含同源结构域的转录因子PITX3对脊椎动物的正常眼睛发育至关重要。在某些情况下,当一个等位基因受到影响时,PITX3中具有点突变的人类患者会表现出先天性白内障和前节缺损,而当两个拷贝都发生突变时,小眼症会伴有脑畸形。这些人类突变的功能后果仍然未知。结果我们研究了PITX3突变蛋白S13N和G219fs,以确定功能缺陷的类型和严重程度。我们的结果证明了DNA结合图谱和/或反式激活活性的改变,并暗示了两种突变体的部分功能丧失,其中G219fs形式受到的影响更为严重。这些突变体没有发现细胞分布异常,也没有发现显性负效应。有趣的是,G219fs活性的损害在不同的眼细胞系之间有所不同。结论在多个先天性白内障家庭中发现了G219fs突变,并在许多成员中出现了前节畸形。我们的数据表明,受G219fs影响的家庭中前节缺损的存在/严重程度可能由发育中的前节结构中表达的次要因素决定,并可能改变这种突变的作用。 S13N突变体仅显示出反式激活能力和DNA结合模式的微小变化,并且可能代表了PITX3基因中罕见的多态性。该突变对人类疾病的可能贡献有待进一步研究。

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