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Biallelic loss-of-function variants in TBC1D2B cause a neurodevelopmental disorder with seizures and gingival overgrowth.TBC1D2B 中的双等位基因功能丧失变异导致伴有癫痫发作和牙龈过度生长的神经发育障碍。
Hum Mutat. 2020 Sep;41(9):1645-1661. doi: 10.1002/humu.24071. Epub 2020 Jul 15.
2
The mutational constraint spectrum quantified from variation in 141,456 humans.从 141456 名人类个体的变异中量化的突变约束谱。
Nature. 2020 May;581(7809):434-443. doi: 10.1038/s41586-020-2308-7. Epub 2020 May 27.
3
Skeletal Dysplasias Caused by Sulfation Defects.硫酸酯缺陷导致的骨骼发育不良。
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4
Dynamics and distribution of paxillin, vinculin, zyxin and VASP depend on focal adhesion location and orientation.桩蛋白、纽蛋白、踝蛋白和 VASP 的动力学和分布取决于黏着斑的位置和取向。
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Bone and connective tissue disorders caused by defects in glycosaminoglycan biosynthesis: a panoramic view.糖胺聚糖生物合成缺陷导致的骨骼和结缔组织疾病:全景视图。
FEBS J. 2019 Aug;286(15):3008-3032. doi: 10.1111/febs.14984. Epub 2019 Jul 25.
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Heparan Sulfate Sulfation by Hs2st Restricts Astroglial Precursor Somal Translocation in Developing Mouse Forebrain by a Non-Cell-Autonomous Mechanism.Hs2st 通过非细胞自主机制限制发育中小鼠前脑星形胶质前体细胞体部转运从而调控肝素硫酸化。
J Neurosci. 2019 Feb 20;39(8):1386-1404. doi: 10.1523/JNEUROSCI.1747-17.2018. Epub 2019 Jan 7.
7
Homozygous mutation in chondrodysplasia, brachydactyly, overriding digits, clino-symphalangism and synpolydactyly.软骨发育不良、短指(趾)、并指(趾)、指(趾)侧偏和多指(趾)症的纯合突变。
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Heparan Sulfate: Biosynthesis, Structure, and Function.硫酸乙酰肝素:生物合成、结构与功能。
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New tools for Mendelian disease gene identification: PhenoDB variant analysis module; and GeneMatcher, a web-based tool for linking investigators with an interest in the same gene.孟德尔疾病基因识别的新工具:PhenoDB变异分析模块;以及GeneMatcher,一个用于将对同一基因感兴趣的研究人员联系起来的基于网络的工具。
Hum Mutat. 2015 Apr;36(4):425-31. doi: 10.1002/humu.22769.

HS2ST1 中的双等位致病性变异导致以发育迟缓、胼胝体、骨骼和肾脏异常为特征的综合征。

Bi-allelic Pathogenic Variants in HS2ST1 Cause a Syndrome Characterized by Developmental Delay and Corpus Callosum, Skeletal, and Renal Abnormalities.

机构信息

Institute of Human Genetics, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.

Nottingham Biodiscovery Institute, University of Nottingham, University Park NG7 2RD, UK.

出版信息

Am J Hum Genet. 2020 Dec 3;107(6):1044-1061. doi: 10.1016/j.ajhg.2020.10.007. Epub 2020 Nov 6.

DOI:10.1016/j.ajhg.2020.10.007
PMID:33159882
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7820632/
Abstract

Heparan sulfate belongs to the group of glycosaminoglycans (GAGs), highly sulfated linear polysaccharides. Heparan sulfate 2-O-sulfotransferase 1 (HS2ST1) is one of several specialized enzymes required for heparan sulfate synthesis and catalyzes the transfer of the sulfate groups to the sugar moiety of heparan sulfate. We report bi-allelic pathogenic variants in HS2ST1 in four individuals from three unrelated families. Affected individuals showed facial dysmorphism with coarse face, upslanted palpebral fissures, broad nasal tip, and wide mouth, developmental delay and/or intellectual disability, corpus callosum agenesis or hypoplasia, flexion contractures, brachydactyly of hands and feet with broad fingertips and toes, and uni- or bilateral renal agenesis in three individuals. HS2ST1 variants cause a reduction in HS2ST1 mRNA and decreased or absent heparan sulfate 2-O-sulfotransferase 1 in two of three fibroblast cell lines derived from affected individuals. The heparan sulfate synthesized by the individual 1 cell line lacks 2-O-sulfated domains but had an increase in N- and 6-O-sulfated domains demonstrating functional impairment of the HS2ST1. As heparan sulfate modulates FGF-mediated signaling, we found a significantly decreased activation of the MAP kinases ERK1/2 in FGF-2-stimulated cell lines of affected individuals that could be restored by addition of heparin, a GAG similar to heparan sulfate. Focal adhesions in FGF-2-stimulated fibroblasts of affected individuals concentrated at the cell periphery. Our data demonstrate that a heparan sulfate synthesis deficit causes a recognizable syndrome and emphasize a role for 2-O-sulfated heparan sulfate in human neuronal, skeletal, and renal development.

摘要

硫酸乙酰肝素属于糖胺聚糖 (GAGs) 组,是高度硫酸化的线性多糖。硫酸乙酰肝素 2-O-磺基转移酶 1 (HS2ST1) 是硫酸乙酰肝素合成所需的几种专用酶之一,可催化硫酸基团转移到硫酸乙酰肝素的糖部分。我们在三个无关家庭的四名个体中报告了 HS2ST1 的双等位致病性变异。受影响的个体表现出面部畸形,具有粗糙的脸、上斜的睑裂、宽鼻尖和宽嘴、发育迟缓/智力残疾、胼胝体发育不全或发育不良、屈肌挛缩、手脚短指和宽指/趾,以及三个人中有单侧或双侧肾发育不全。在来自受影响个体的三个成纤维细胞系中的两个中,HS2ST1 变异导致 HS2ST1 mRNA 减少和 2-O-磺基转移酶 1 减少或缺失。个体 1 细胞系合成的硫酸乙酰肝素缺乏 2-O-硫酸化结构域,但 N-和 6-O-硫酸化结构域增加,表明 HS2ST1 的功能受损。由于硫酸乙酰肝素调节 FGF 介导的信号转导,我们发现受影响个体的 FGF-2 刺激细胞系中 MAP 激酶 ERK1/2 的激活显著降低,这可以通过添加肝素(与硫酸乙酰肝素相似的 GAG)来恢复。受影响个体的 FGF-2 刺激的成纤维细胞中的焦点粘附在细胞外周集中。我们的数据表明,硫酸乙酰肝素合成不足会导致可识别的综合征,并强调 2-O-硫酸化硫酸乙酰肝素在人类神经、骨骼和肾脏发育中的作用。