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3
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[Deficiencies of hypoxanthine guanine phosphoribosyltransferase (HPRT)].[次黄嘌呤鸟嘌呤磷酸核糖转移酶(HPRT)缺乏症]
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本文引用的文献

1
HPRT-deficiency dysregulates cAMP-PKA signaling and phosphodiesterase 10A expression: mechanistic insight and potential target for Lesch-Nyhan Disease?HPRT 缺陷导致 cAMP-PKA 信号转导和磷酸二酯酶 10A 表达失调:机制见解和潜在的 Lesch-Nyhan 疾病靶点?
PLoS One. 2013 May 14;8(5):e63333. doi: 10.1371/journal.pone.0063333. Print 2013.
2
Social, communication, and cortical structural impairments in Epac2-deficient mice.Epac2 缺陷型小鼠的社会、交流和皮质结构损伤。
J Neurosci. 2012 Aug 22;32(34):11864-78. doi: 10.1523/JNEUROSCI.1349-12.2012.
3
Neuronally expressed Ras-family GTPase Di-Ras modulates synaptic activity in Caenorhabditis elegans.神经元表达的 Ras 家族 GTP 酶 Di-Ras 调节秀丽隐杆线虫的突触活性。
Genes Cells. 2012 Sep;17(9):778-89. doi: 10.1111/j.1365-2443.2012.01627.x. Epub 2012 Aug 16.
4
An autism-associated variant of Epac2 reveals a role for Ras/Epac2 signaling in controlling basal dendrite maintenance in mice.一种与自闭症相关的 Epac2 变异体揭示了 Ras/Epac2 信号在控制小鼠基础树突维持中的作用。
PLoS Biol. 2012;10(6):e1001350. doi: 10.1371/journal.pbio.1001350. Epub 2012 Jun 26.
5
The Rac GTP exchange factor TIAM-1 acts with CDC-42 and the guidance receptor UNC-40/DCC in neuronal protrusion and axon guidance.Rac GTP 交换因子 TIAM-1 与 CDC-42 和导向受体 UNC-40/DCC 在神经元突起和轴突导向中发挥作用。
PLoS Genet. 2012;8(4):e1002665. doi: 10.1371/journal.pgen.1002665. Epub 2012 Apr 26.
6
Neuronal polarization is impaired in mice lacking RhoE expression.缺乏 RhoE 表达的小鼠神经元极化受损。
J Neurochem. 2012 Jun;121(6):903-14. doi: 10.1111/j.1471-4159.2012.07733.x. Epub 2012 Apr 13.
7
Purinergic signaling in human pluripotent stem cells is regulated by the housekeeping gene encoding hypoxanthine guanine phosphoribosyltransferase.嘌呤能信号在人类多能干细胞中受编码次黄嘌呤鸟嘌呤磷酸核糖转移酶的管家基因调控。
Proc Natl Acad Sci U S A. 2012 Feb 28;109(9):3377-82. doi: 10.1073/pnas.1118067109. Epub 2012 Feb 13.
8
Role of Epac in brain and heart.Epac 在脑和心脏中的作用。
Biochem Soc Trans. 2012 Feb;40(1):51-7. doi: 10.1042/BST20110642.
9
Assessment of Rho GTPase signaling during neurite outgrowth.神经突生长过程中Rho GTPase信号传导的评估。
Methods Mol Biol. 2012;827:181-94. doi: 10.1007/978-1-61779-442-1_13.
10
MicroRNA-mediated dysregulation of neural developmental genes in HPRT deficiency: clues for Lesch-Nyhan disease?HPRT 缺陷中神经发育基因的 microRNA 介导失调:提示 Lesch-Nyhan 病?
Hum Mol Genet. 2012 Feb 1;21(3):609-22. doi: 10.1093/hmg/ddr495. Epub 2011 Oct 31.

嘌呤代谢基因 HPRT 缺陷会导致 microRNA-17 家族簇和基于鸟嘌呤的细胞功能紊乱:EPAC 在莱施-尼汉综合征中的作用。

Deficiency of the purine metabolic gene HPRT dysregulates microRNA-17 family cluster and guanine-based cellular functions: a role for EPAC in Lesch-Nyhan syndrome.

机构信息

Department of Pediatrics, Division of Genetics/Rady Children's Hospital and.

出版信息

Hum Mol Genet. 2013 Nov 15;22(22):4502-15. doi: 10.1093/hmg/ddt298. Epub 2013 Jun 25.

DOI:10.1093/hmg/ddt298
PMID:23804752
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3888132/
Abstract

Lesch-Nyhan syndrome (LNS) is a neurodevelopmental disorder caused by mutations in the gene encoding the purine metabolic enzyme hypoxanthine-guanine phosphoribosyltransferase (HPRT). A series of motor, cognitive and neurobehavioral anomalies characterize this disease phenotype, which is still poorly understood. The clinical manifestations of this syndrome are believed to be the consequences of deficiencies in neurodevelopmental pathways that lead to disordered brain function. We have used microRNA array and gene ontology analysis to evaluate the gene expression of differentiating HPRT-deficient human neuron-like cell lines. We set out to identify dysregulated genes implicated in purine-based cellular functions. Our approach was based on the premise that HPRT deficiency affects preeminently the expression and the function of purine-based molecular complexes, such as guanine nucleotide exchange factors (GEFs) and small GTPases. We found that several microRNAs from the miR-17 family cluster and genes encoding GEF are dysregulated in HPRT deficiency. Most notably, our data show that the expression of the exchange protein activated by cAMP (EPAC) is blunted in HPRT-deficient human neuron-like cell lines and fibroblast cells from LNS patients, and is altered in the cortex, striatum and midbrain of HPRT knockout mouse. We also show a marked impairment in the activation of small GTPase RAP1 in the HPRT-deficient cells, as well as differences in cytoskeleton dynamics that lead to increased motility for HPRT-deficient neuron-like cell lines relative to control. We propose that the alterations in EPAC/RAP1 signaling and cell migration in HPRT deficiency are crucial for neuro-developmental events that may contribute to the neurological dysfunctions in LNS.

摘要

Lesch-Nyhan 综合征(LNS)是一种神经发育障碍,由编码嘌呤代谢酶次黄嘌呤-鸟嘌呤磷酸核糖转移酶(HPRT)的基因突变引起。一系列运动、认知和神经行为异常特征是这种疾病表型,但其仍未被充分理解。据信,该综合征的临床表现是导致大脑功能紊乱的神经发育途径缺陷的结果。我们使用 microRNA 阵列和基因本体分析来评估分化的 HPRT 缺陷型人神经元样细胞系的基因表达。我们旨在确定与嘌呤为基础的细胞功能相关的失调基因。我们的方法基于以下前提:HPRT 缺陷主要影响嘌呤为基础的分子复合物(如鸟嘌呤核苷酸交换因子(GEF)和小 GTPase)的表达和功能。我们发现,miR-17 家族簇中的几个 microRNA 和编码 GEF 的基因在 HPRT 缺陷中失调。值得注意的是,我们的数据表明,cAMP 激活的交换蛋白(EPAC)的表达在 HPRT 缺陷型人神经元样细胞系和 LNS 患者的成纤维细胞中受到抑制,并且在 HPRT 敲除小鼠的皮质、纹状体和中脑中发生改变。我们还表明,在 HPRT 缺陷细胞中,小 GTPase RAP1 的激活明显受损,以及细胞骨架动力学的差异导致 HPRT 缺陷型神经元样细胞系相对于对照具有更高的迁移能力。我们提出,在 HPRT 缺陷中 EPAC/RAP1 信号转导和细胞迁移的改变对于神经发育事件至关重要,这些事件可能导致 LNS 中的神经功能障碍。