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本文引用的文献

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Mechanisms of alternative splicing regulation: insights from molecular and genomics approaches.可变剪接调控机制:来自分子和基因组学方法的见解
Nat Rev Mol Cell Biol. 2009 Nov;10(11):741-54. doi: 10.1038/nrm2777. Epub 2009 Sep 23.
2
RNA-binding proteins hnRNP A2/B1 and CUGBP1 suppress fragile X CGG premutation repeat-induced neurodegeneration in a Drosophila model of FXTAS.RNA结合蛋白hnRNP A2/B1和CUGBP1在脆性X震颤共济失调综合征(FXTAS)的果蝇模型中抑制脆性X CGG前突变重复序列诱导的神经变性。
Neuron. 2007 Aug 16;55(4):565-71. doi: 10.1016/j.neuron.2007.07.021.
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Inactivation of CUG-BP1/CELF1 causes growth, viability, and spermatogenesis defects in mice.CUG-BP1/CELF1的失活会导致小鼠出现生长、生存能力及精子发生缺陷。
Mol Cell Biol. 2007 Feb;27(3):1146-57. doi: 10.1128/MCB.01009-06. Epub 2006 Nov 27.
4
CUG-BP1/CELF1 requires UGU-rich sequences for high-affinity binding.CUG-BP1/CELF1需要富含UGU的序列来进行高亲和力结合。
Biochem J. 2006 Dec 1;400(2):291-301. doi: 10.1042/BJ20060490.
5
SAP155 Binds to ceramide-responsive RNA cis-element 1 and regulates the alternative 5' splice site selection of Bcl-x pre-mRNA.SAP155与神经酰胺反应性RNA顺式元件1结合,并调节Bcl-x前体mRNA的可变5'剪接位点选择。
FASEB J. 2006 Aug;20(10):1680-2. doi: 10.1096/fj.05-5021fje. Epub 2006 Jun 21.
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RNA-mediated neuromuscular disorders.RNA介导的神经肌肉疾病。
Annu Rev Neurosci. 2006;29:259-77. doi: 10.1146/annurev.neuro.29.051605.113014.
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Mammalian CELF/Bruno-like RNA-binding proteins: molecular characteristics and biological functions.哺乳动物CELF/Bruno样RNA结合蛋白:分子特征与生物学功能
Biochimie. 2006 May;88(5):515-25. doi: 10.1016/j.biochi.2005.10.011. Epub 2005 Dec 5.
8
TAT-mediated delivery of Bcl-xL protein is neuroprotective against neonatal hypoxic-ischemic brain injury via inhibition of caspases and AIF.TAT介导的Bcl-xL蛋白递送通过抑制半胱天冬酶和凋亡诱导因子对新生儿缺氧缺血性脑损伤具有神经保护作用。
Neurobiol Dis. 2006 Feb;21(2):358-71. doi: 10.1016/j.nbd.2005.07.015. Epub 2005 Sep 6.
9
Nova regulates brain-specific splicing to shape the synapse.Nova蛋白调控大脑特异性剪接以塑造突触。
Nat Genet. 2005 Aug;37(8):844-52. doi: 10.1038/ng1610. Epub 2005 Jul 24.
10
Transgenic mice expressing CUG-BP1 reproduce splicing mis-regulation observed in myotonic dystrophy.表达CUG-BP1的转基因小鼠重现了强直性肌营养不良中观察到的剪接失调。
Hum Mol Genet. 2005 Jun 1;14(11):1539-47. doi: 10.1093/hmg/ddi162. Epub 2005 Apr 20.

Bcl-x 前体 mRNA 剪接调控新生鼠缺氧缺血性脑损伤。

Bcl-x pre-mRNA splicing regulates brain injury after neonatal hypoxia-ischemia.

机构信息

Hope Center for Neurological Disorders and Department of Neurology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Neurosci. 2012 Sep 26;32(39):13587-96. doi: 10.1523/JNEUROSCI.2617-12.2012.

DOI:10.1523/JNEUROSCI.2617-12.2012
PMID:23015448
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3482490/
Abstract

The bcl-x gene appears to play a critical role in regulating apoptosis in the developing and mature CNS and following CNS injury. Two isoforms of Bcl-x are produced as a result of alternative pre-mRNA splicing: Bcl-x(L) (the long form) is anti-apoptotic, while Bcl-x(S) (short form) is pro-apoptotic. Despite the antagonistic activities of these two isoforms, little is known about how regulation of alternative splicing of bcl-x may mediate neural cell apoptosis. Here, we report that apoptotic stimuli (staurosporine or C2-ceramide) reciprocally altered Bcl-x splicing in neural cells, decreasing Bcl-x(L) while increasing Bcl-x(S). Specific knockdown of Bcl-x(S) attenuated apoptosis. To further define regulatory elements that influenced Bcl-x splicing, a Bcl-x minigene was constructed. Deletional analysis revealed several consensus sequences within intron 2 that altered splicing. We found that the splicing factor, CUG-binding-protein-1 (CUGBP1), bound to a consensus sequence close to the Bcl-x(L) 5' splice site, altering the Bcl-x(L)/Bcl-x(S) ratio and influencing cell death. In vivo, neonatal hypoxia-ischemia reciprocally altered Bcl-x pre-mRNA splicing, similar to the in vitro studies. Manipulation of the splice isoforms using viral gene transfer of Bcl-x(S) shRNA into the hippocampus of rats before neonatal hypoxia-ischemia decreased vulnerability to injury. Moreover, alterations in nuclear CUGBP1 preceded Bcl-x splicing changes. These results suggest that alternative pre-mRNA splicing may be an important regulatory mechanism for cell death after acute neurological injury and may potentially provide novel targets for intervention.

摘要

bcl-x 基因似乎在调节中枢神经系统(CNS)发育和成熟以及 CNS 损伤后的细胞凋亡中发挥关键作用。通过选择性剪接前体 mRNA 可产生两种 Bcl-x 同工型:Bcl-x(L)(长型)是抗凋亡的,而 Bcl-x(S)(短型)是促凋亡的。尽管这两种同工型具有拮抗作用,但对 bcl-x 选择性剪接如何调节神经细胞凋亡知之甚少。在这里,我们报告凋亡刺激(星形孢菌素或 C2-神经酰胺)在神经细胞中相互改变 Bcl-x 的剪接,减少 Bcl-x(L) 同时增加 Bcl-x(S)。特异性敲低 Bcl-x(S)可减弱细胞凋亡。为了进一步定义影响 Bcl-x 剪接的调节元件,构建了 Bcl-x 小基因。缺失分析显示,内含子 2 内存在几个改变剪接的保守序列。我们发现剪接因子 CUG 结合蛋白 1 (CUGBP1)与靠近 Bcl-x(L)5'剪接位点的保守序列结合,改变 Bcl-x(L)/Bcl-x(S) 比值并影响细胞死亡。在体内,新生大鼠缺氧缺血后 Bcl-x 前体 mRNA 的剪接与体外研究相似。在新生大鼠缺氧缺血前使用 Bcl-x(S)shRNA 的病毒基因转移对剪接异构体进行操作,可减少对损伤的易感性。此外,CUGBP1 的核内改变先于 Bcl-x 剪接变化。这些结果表明,选择性前体 mRNA 剪接可能是急性神经损伤后细胞死亡的重要调节机制,并且可能为干预提供新的靶点。