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Knockout of the intellectual disability-linked gene Hs6st2 in mice decreases heparan sulfate 6-O-sulfation, impairs dendritic spines of hippocampal neurons, and affects memory.敲除与智力障碍相关的基因 Hs6st2 可降低肝素硫酸 6-O-硫酸化,损害海马神经元的树突棘,并影响记忆。
Glycobiology. 2024 Mar 26;34(2). doi: 10.1093/glycob/cwad095.
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Involvement of heparan sulfate 6-O-sulfation in the regulation of energy metabolism and the alteration of thyroid hormone levels in male mice.硫酸乙酰肝素 6-O-磺酸化参与雄性小鼠能量代谢的调节和甲状腺激素水平的改变。
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STAR Protoc. 2023 May 6;4(2):102290. doi: 10.1016/j.xpro.2023.102290.
2
Convergent biological pathways underlying the Kallmann syndrome-linked genes Hs6st1 and Fgfr1.Kallmann 综合征相关基因 Hs6st1 和 Fgfr1 所涉及的趋同生物学途径。
Hum Mol Genet. 2022 Dec 16;31(24):4207-4216. doi: 10.1093/hmg/ddac172.
3
Control of protein synthesis and memory by GluN3A-NMDA receptors through inhibition of GIT1/mTORC1 assembly.通过抑制 GIT1/mTORC1 组装来控制 GluN3A-NMDA 受体的蛋白质合成和记忆。
Elife. 2021 Nov 17;10:e71575. doi: 10.7554/eLife.71575.
4
Highly accurate protein structure prediction with AlphaFold.利用 AlphaFold 进行高精度蛋白质结构预测。
Nature. 2021 Aug;596(7873):583-589. doi: 10.1038/s41586-021-03819-2. Epub 2021 Jul 15.
5
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Glycobiology. 2021 Nov 18;31(10):1308-1318. doi: 10.1093/glycob/cwab054.
6
Offspring of Obese Dams Exhibit Sex-Differences in Pancreatic Heparan Sulfate Glycosaminoglycans and Islet Insulin Secretion.肥胖母鼠后代的胰腺肝素硫酸糖胺聚糖和胰岛胰岛素分泌存在性别差异。
Front Endocrinol (Lausanne). 2021 May 24;12:658439. doi: 10.3389/fendo.2021.658439. eCollection 2021.
7
Integrated Transcriptome and Network Analysis Reveals Spatiotemporal Dynamics of Calvarial Suturogenesis.整合转录组和网络分析揭示颅骨缝愈合的时空动态。
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9
Triglyceride-rich lipoprotein binding and uptake by heparan sulfate proteoglycan receptors in a CRISPR/Cas9 library of Hep3B mutants.富含甘油三酯的脂蛋白与 Hep3B 突变体 CRISPR/Cas9 文库中硫酸乙酰肝素蛋白聚糖受体的结合和摄取。
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敲除与智力障碍相关的基因 Hs6st2 可降低肝素硫酸 6-O-硫酸化,损害海马神经元的树突棘,并影响记忆。

Knockout of the intellectual disability-linked gene Hs6st2 in mice decreases heparan sulfate 6-O-sulfation, impairs dendritic spines of hippocampal neurons, and affects memory.

机构信息

Department of Biomedical Sciences, New York Institute of Technology College of Osteopathic Medicine, Northern Boulevard, P.O. Box 8000, Old Westbury, New York 11568, United States.

Complex Carbohydrate Research Center, 315 Riverbend Road, University of Georgia, Athens, GA 30602, United States.

出版信息

Glycobiology. 2024 Mar 26;34(2). doi: 10.1093/glycob/cwad095.

DOI:10.1093/glycob/cwad095
PMID:38015989
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10969535/
Abstract

Heparan sulfate (HS) is a linear polysaccharide that plays a key role in cellular signaling networks. HS functions are regulated by its 6-O-sulfation, which is catalyzed by three HS 6-O-sulfotransferases (HS6STs). Notably, HS6ST2 is mainly expressed in the brain and HS6ST2 mutations are linked to brain disorders, but the underlying mechanisms remain poorly understood. To determine the role of Hs6st2 in the brain, we carried out a series of molecular and behavioral assessments on Hs6st2 knockout mice. We first carried out strong anion exchange-high performance liquid chromatography and found that knockout of Hs6st2 moderately decreases HS 6-O-sulfation levels in the brain. We then assessed body weights and found that Hs6st2 knockout mice exhibit increased body weight, which is associated with abnormal metabolic pathways. We also performed behavioral tests and found that Hs6st2 knockout mice showed memory deficits, which recapitulate patient clinical symptoms. To determine the molecular mechanisms underlying the memory deficits, we used RNA sequencing to examine transcriptomes in two memory-related brain regions, the hippocampus and cerebral cortex. We found that knockout of Hs6st2 impairs transcriptome in the hippocampus, but only mildly in the cerebral cortex. Furthermore, the transcriptome changes in the hippocampus are enriched in dendrite and synapse pathways. We also found that knockout of Hs6st2 decreases HS levels and impairs dendritic spines in hippocampal CA1 pyramidal neurons. Taken together, our study provides novel molecular and behavioral insights into the role of Hs6st2 in the brain, which facilitates a better understanding of HS6ST2 and HS-linked brain disorders.

摘要

硫酸乙酰肝素 (HS) 是一种线性多糖,在细胞信号网络中起着关键作用。HS 的功能受其 6-O-硫酸化的调节,该过程由三种 HS 6-O-硫酸转移酶 (HS6STs) 催化。值得注意的是,HS6ST2 主要在大脑中表达,HS6ST2 突变与大脑疾病有关,但潜在机制仍知之甚少。为了确定 Hs6st2 在大脑中的作用,我们对 Hs6st2 敲除小鼠进行了一系列分子和行为评估。我们首先进行了强阴离子交换高效液相色谱分析,发现 Hs6st2 的敲除可适度降低大脑中的 HS 6-O-硫酸化水平。然后我们评估了体重,发现 Hs6st2 敲除小鼠的体重增加,这与异常的代谢途径有关。我们还进行了行为测试,发现 Hs6st2 敲除小鼠表现出记忆缺陷,这与患者的临床症状相吻合。为了确定记忆缺陷的分子机制,我们使用 RNA 测序检查了两个与记忆相关的大脑区域(海马体和大脑皮层)中的转录组。我们发现 Hs6st2 的敲除会损害海马体中的转录组,但在大脑皮层中只有轻微的影响。此外,海马体中转录组的变化在树突和突触途径中富集。我们还发现 Hs6st2 的敲除会降低 HS 水平并损害海马体 CA1 锥体神经元中的树突棘。综上所述,我们的研究为 Hs6st2 在大脑中的作用提供了新的分子和行为见解,有助于更好地理解 HS6ST2 和 HS 相关的大脑疾病。