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NKX2-2 基因的一种新型无义突变可导致新生儿糖尿病:分子特征和结构分析。

A novel stop-loss mutation in NKX2-2 gene as a cause of neonatal diabetes mellitus: molecular characterization and structural analysis.

机构信息

Department of Molecular Genetics, Madras Diabetes Research Foundation, ICMR Centre for Advanced Research On Diabetes, Affiliated to University of Madras, #4, Conran Smith Road, Gopalapuram, Chennai, 600 086, India.

Andhra Medical College, Visakhapatnam, Andhra Pradesh, India.

出版信息

Acta Diabetol. 2024 Feb;61(2):189-194. doi: 10.1007/s00592-023-02192-y. Epub 2023 Oct 11.

Abstract

AIM

To identify the genetic etiology of neonatal diabetes in an infant and to elucidate the molecular mechanism of the identified mutation underlying the pathogenesis.

METHODS

Genetic analysis was carried out by sequencing of known etiological genes associated with NDM. Molecular characterization was performed by constructing a identified mutation in NKX2-2 gene and  functional aspects was tested using transactivation, protein expression, DNA binding, nuclear localization assays. Structural analysis was performed by modeling the NKX2-2 protein structure.

RESULTS

A novel homozygous frameshift mutation  c.772delC, p.Q258SFs*59 in the NKX2-2 gene was identified in a patient with neonatal diabetes. Functional studies revealed that this mutation resulted in an elongated protein sequence, affecting DNA binding activity and transcriptional function. Structural analysis suggested alterations in the protein's tertiary structure, likely contributing to its dysfunction.

CONCLUSION

This study presents the first report of a stop-loss mutation in the NKX2-2 gene associated with NDM. Our findings emphasize the importance of functional and structural characterization to understand the biological consequences of such mutations. This comprehensive analysis provides insights into the molecular mechanisms underlying NDM and its clinical phenotype, which may aid in better diagnosis and management of patients with similar variants in the future.

摘要

目的

鉴定一名新生儿糖尿病患儿的遗传病因,并阐明导致发病的已鉴定突变的分子机制。

方法

通过对与 NDM 相关的已知病因基因进行测序,开展遗传分析。通过构建 NKX2-2 基因中的已鉴定突变,进行分子特征分析,并通过转激活、蛋白表达、DNA 结合、核定位检测,对其功能方面进行测试。通过 NKX2-2 蛋白结构建模,进行结构分析。

结果

在一名新生儿糖尿病患儿中鉴定到 NKX2-2 基因中的一个新型纯合移码突变 c.772delC, p.Q258SFs*59。功能研究表明,该突变导致蛋白序列延长,影响 DNA 结合活性和转录功能。结构分析提示蛋白的三级结构发生改变,可能导致其功能障碍。

结论

本研究首次报道了与 NDM 相关的 NKX2-2 基因中的无义突变。我们的研究结果强调了功能和结构特征分析对于理解此类突变的生物学后果的重要性。这项综合分析为 NDM 及其临床表型的分子机制提供了深入了解,可能有助于未来更好地诊断和管理具有类似变异的患者。

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