Suppr超能文献

法 布 里 病 在 突 尼 西 亚 患 者 中 的 研 究 : FUCA1 酶 的 突 变 分 析 和 基 因 同 源 模 型 建 立 。

Fucosidosis in Tunisian patients: mutational analysis and homology-based modeling of FUCA1 enzyme.

机构信息

Research Laboratory of Human Genome and Multifactorial Diseases, Faculty of Pharmacy, University of Monastir, Street Avicenne, 5000, Monastir, Tunisia.

Biochemistry Laboratory (LR 00SP03), Bechir Hamza Children's Hospital, Tunis, Tunisia.

出版信息

BMC Med Genomics. 2021 Aug 23;14(1):208. doi: 10.1186/s12920-021-01061-3.

Abstract

BACKGROUND

Fucosidosis is an autosomal recessive lysosomal storage disease caused by defective alpha-L-fucosidase (FUCA1) activity, leading to the accumulation of fucose-containing glycolipids and glycoproteins in various tissues. Clinical features include angiokeratoma, progressive psychomotor retardation, neurologic signs, coarse facial features, and dysostosis multiplex.

METHODS

All exons and flanking intron regions of FUCA1 were screened by direct sequencing to identify mutations and polymorphisms in three unrelated families with fucosidosis. Bioinformatics tools were then used to predict the impacts of novel alterations on the structure and function of proteins. Furthermore, the identified mutations were localized onto a 3D structure model using the DeepView Swiss-PdbViewer 4.1 software, which established a function-structure relationship of the FUCA1 proteins.

RESULTS

Four novel mutations were identified in this study. Two patients (P1 and P2) in Families 1 and 2 who had the severe phenotype were homoallelic for the two identified frameshift mutations p.K57Sfs75 and p.F77Sfs55, respectively. The affected patient (P3) from Family 3, who had the milder phenotype, was heterozygous for the novel missense mutation p.G332E and the novel splice site mutation c.662+5g>c. We verified that this sequence variation did not correspond to a polymorphism by testing 50 unrelated individuals. Additionally, 16 FUCA1 polymorphisms were identified. The structure prediction analysis showed that the missense mutation p.G332E would probably lead to a significant conformational change, thereby preventing the expression of the FUCA1 protein indeed; the 3D structural model of the FUCA1 protein reveals that the glycine at position 332 is located near a catalytic nucleophilic residue. This makes it likely that the enzymatic function of the protein with p.G332E is severely impaired.

CONCLUSION

These are the first FUCA1 mutations identified in Tunisia that cause the fucosidosis disease. Bioinformatics analysis allowed us to establish an approximate structure-function relationship for the FUCA1 protein, thereby providing better genotype/phenotype correlation knowledge.

摘要

背景

黏脂贮积症是一种常染色体隐性溶酶体贮积病,由缺陷的α-L-岩藻糖苷酶(FUCA1)活性引起,导致各种组织中岩藻糖基化糖脂和糖蛋白的积累。临床特征包括血管角皮瘤、进行性精神运动发育迟缓、神经体征、粗糙面容和多发性骨发育不良。

方法

通过直接测序筛选 FUCA1 的所有外显子和侧翼内含子区域,以鉴定三个黏脂贮积症家系中的突变和多态性。然后使用生物信息学工具预测新改变对蛋白质结构和功能的影响。此外,使用 DeepView Swiss-PdbViewer 4.1 软件将鉴定的突变定位到 3D 结构模型上,建立 FUCA1 蛋白的功能-结构关系。

结果

本研究共发现 4 个新突变。家系 1 和 2 的 2 名严重表型患者(P1 和 P2)均为两个鉴定的移码突变 p.K57Sfs75 和 p.F77Sfs55 的纯合子。表型较轻的家系 3 受影响患者(P3)为杂合子,携带新的错义突变 p.G332E 和新的剪接位点突变 c.662+5g>c。通过对 50 个无关个体进行检测,证实该序列变异不是多态性。此外,还鉴定了 16 个 FUCA1 多态性。结构预测分析表明,错义突变 p.G332E 可能导致显著的构象变化,从而阻止 FUCA1 蛋白的表达;FUCA1 蛋白的 3D 结构模型显示,位置 332 的甘氨酸位于靠近催化亲核残基的位置。这使得该蛋白的 p.G332E 具有严重的酶功能受损的可能性。

结论

这些是突尼斯首次发现导致黏脂贮积症的 FUCA1 突变。生物信息学分析使我们能够建立 FUCA1 蛋白的近似结构-功能关系,从而提供更好的基因型/表型相关性知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00a0/8383439/4ac77be51dd2/12920_2021_1061_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验