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TET2 错义变异在人类肿瘤中的作用。一种结构和功能分类的建议。

TET2 missense variants in human neoplasia. A proposal of structural and functional classification.

机构信息

Hematology Department and Diagnostic Hematology Group, Barcelona, Spain.

Molecular Bases of Disease, The Biomedical Research Institute Sant Pau (IIB Sant Pau), Hospital de la Santa Creu i Sant Pau, Barcelona, Spain.

出版信息

Mol Genet Genomic Med. 2019 Jul;7(7):e00772. doi: 10.1002/mgg3.772. Epub 2019 Jun 11.

Abstract

BACKGROUND

The human TET2 gene plays a pivotal role in the epigenetic regulation of normal and malignant hematopoiesis. Somatic TET2 mutations have been repeatedly identified in age-related clonal hematopoiesis and in myeloid neoplasms ranging from acute myeloid leukemia (AML) to myeloproliferative neoplasms. However, there have been no attempts to systematically explore the structural and functional consequences of the hundreds of TET2 missense variants reported to date.

METHODS

We have sequenced the TET2 gene in 189 Spanish AML patients using Sanger sequencing and NGS protocols. Next, we performed a thorough bioinformatics analysis of TET2 protein and of the expected impact of all reported TET2 missense variants on protein structure and function, exploiting available structure-and-function information as well as 3D structure prediction tools.

RESULTS

We have identified 38 TET2 allelic variants in the studied patients, including two frequent SNPs: p.G355D (10 cases) and p.I1762V (28 cases). Four of the detected mutations are reported here for the first time: c.122C>T (p.P41L), c.4535C>G (p.A1512G), c.4760A>G (p.D1587G), and c.5087A>T (p.Y1696F). We predict a complex multidomain architecture for the noncatalytic regions of TET2, and in particular the presence of well-conserved α+β globular domains immediately preceding and following the actual catalytic unit. Further, we provide a rigorous interpretation of over 430 missense SNVs that affect the TET2 catalytic domain, and we hypothesize explanations for ~700 additional variants found within the regulatory regions of the protein. Finally, we propose a systematic classification of all missense mutants and SNPs reported to date into three major categories (severe, moderate, and mild), based on their predicted structural and functional impact.

CONCLUSIONS

The proposed classification of missense TET2 variants would help to assess their clinical impact on human neoplasia and may guide future structure-and-function investigations of TET family members.

摘要

背景

人类 TET2 基因在正常和恶性造血的表观遗传调控中起着关键作用。体细胞 TET2 突变已在与年龄相关的克隆性造血和从急性髓系白血病(AML)到骨髓增生性肿瘤的髓系肿瘤中反复被发现。然而,迄今为止,还没有人试图系统地探索已报道的数百种 TET2 错义变体的结构和功能后果。

方法

我们使用 Sanger 测序和 NGS 方案对 189 名西班牙 AML 患者的 TET2 基因进行了测序。接下来,我们对 TET2 蛋白进行了彻底的生物信息学分析,并对所有报道的 TET2 错义变体对蛋白质结构和功能的预期影响进行了分析,利用了可用的结构-功能信息和 3D 结构预测工具。

结果

我们在研究的患者中发现了 38 种 TET2 等位基因变异,包括两个常见的 SNP:p.G355D(10 例)和 p.I1762V(28 例)。检测到的 4 种突变是首次报道的:c.122C>T(p.P41L),c.4535C>G(p.A1512G),c.4760A>G(p.D1587G)和 c.5087A>T(p.Y1696F)。我们预测 TET2 非催化区具有复杂的多结构域结构,特别是在实际催化单元之前和之后存在保存良好的α+β球状结构域。此外,我们对影响 TET2 催化结构域的超过 430 个错义 SNV 进行了严格的解释,并对在蛋白质调节区发现的约 700 个额外变体提出了假设解释。最后,我们根据其预测的结构和功能影响,将迄今为止报道的所有错义突变体和 SNP 分为三大类(严重、中度和轻度)进行系统分类。

结论

提出的 TET2 错义变体分类方法有助于评估它们对人类肿瘤的临床影响,并可能指导 TET 家族成员的未来结构和功能研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdae/6625141/9d5e9b96632c/MGG3-7-e00772-g001.jpg

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