Suppr超能文献

机械敏感型 Piezo1 离子通道蛋白(PIEZO1 基因):对印度遗传性血红细胞增多症的更新和扩展突变分析。

Mechanosensitive Piezo1 ion channel protein (PIEZO1 gene): update and extended mutation analysis of hereditary xerocytosis in India.

机构信息

Department of Hematogenetics, ICMR-National Institute of Immunohematology, KEM Hospital Campus, Parel, Mumbai, 40012, India.

出版信息

Ann Hematol. 2020 Apr;99(4):715-727. doi: 10.1007/s00277-020-03955-1. Epub 2020 Feb 28.

Abstract

Hereditary xerocytosis (HX), also known as dehydrated stomatocytosis (DHSt) is a dominantly inherited genetic disorder exhibiting red cell membrane dehydration caused by the loss of the monovalent cation K and water. Variants in mechanosensitive Piezo ionic channels of the PIEZO1 gene are the primary cause of HX. We have utilized high throughput and highly precise next-generation sequencing (NGS) to make a diagnosis and examine the genotype-phenotype relationship in inflexible HX cases. Seven unrelated patients with unexplained hemolytic anemia were scrutinized with a panel probing 8000 genes related to congenital anemia. Targeted next-generation sequencing identified 8 missense variants in the PIEZO1 gene in 7 unrelated Indian patients. Three of the 8 variants are novel (c.1795G > C, c.2915G > A, c.7372 T > C) and the remaining five (c.4082A > G, c.6829C > A, c.7374C > G, c.7381G > A, c.7483_7488dup) are previously reported. The variants have been validated by Sanger sequencing. One patient with autosomal dominant mutation (c.7372 T > C) is associated with iron refractory iron deficiency anemia. Of the 7 patients, one has HX in combination with a novel homozygous variant (c.994G > A) in the PKLR gene causing PK deficiency resulting in severe clinical manifestations with phenotypic variability. In silico prediction using bioinformatics tools were used to study the possible damaging effects of the novel variants. Structural-functional analysis of the novel variants was investigated by molecular modeling software (PyMOL and Swiss PDB). These results encompass the heterogeneous behavior of mechano-sensitive Piezo1 protein observed in HX patients in India. Moreover, NGS imparted a subtle, economical, and quick tool for understanding the genetic cause of undiagnosed cases of congenital hemolytic anemia. NGS grants a potential technology integrating clinical history together with molecular report profiting in such patients and their families.

摘要

遗传性血影细胞增多症(HX),又称脱水性口形红细胞增多症(DHSt),是一种显性遗传性遗传疾病,表现为单价阳离子 K 和水的丢失导致红细胞膜脱水。PIEZO1 基因机械敏感 Piezo 离子通道的变体是 HX 的主要原因。我们利用高通量和高精度的下一代测序(NGS)对刚性 HX 病例进行诊断和检查基因型-表型关系。对 7 名原因不明溶血性贫血的非亲属患者进行了检查,使用了一个探测 8000 个与先天性贫血相关基因的小组。靶向下一代测序在 7 名无关的印度患者的 PIEZO1 基因中发现了 8 个错义变体。这 8 个变体中有 3 个是新的(c.1795G>T>C、c.2915G>A、c.7372T>C),其余 5 个(c.4082A>G、c.6829C>A、c.7374C>G、c.7381G>A、c.7483_7488dup)是先前报道的。通过 Sanger 测序验证了这些变体。一个具有常染色体显性突变(c.7372T>C)的患者与铁难治性缺铁性贫血有关。在 7 名患者中,1 名患者同时患有 HX 和 PKLR 基因的新型纯合变体(c.994G>A),导致 PK 缺乏,导致严重的临床表现和表型变异性。使用生物信息学工具进行的计算机预测用于研究新变体可能造成的破坏性影响。使用分子建模软件(PyMOL 和 Swiss PDB)对新变体进行结构功能分析。这些结果包含了在印度 HX 患者中观察到的机械敏感 Piezo1 蛋白的异质行为。此外,NGS 为理解未确诊的先天性溶血性贫血病例的遗传原因提供了一种微妙、经济和快速的工具。NGS 为这些患者及其家属提供了将临床病史与分子报告相结合的潜在技术。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验