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本文引用的文献

1
Combinations of DEAD box proteins distinguish distinct types of RNA: protein complexes in neurons.DEAD盒蛋白的组合区分神经元中不同类型的RNA:蛋白质复合物。
Mol Cell Neurosci. 2009 Apr;40(4):485-95. doi: 10.1016/j.mcn.2009.01.007.
2
mRNA localization: gene expression in the spatial dimension.mRNA定位:空间维度上的基因表达。
Cell. 2009 Feb 20;136(4):719-30. doi: 10.1016/j.cell.2009.01.044.
3
Making synaptic plasticity and memory last: mechanisms of translational regulation.使突触可塑性和记忆持久:翻译调控机制
Genes Dev. 2009 Jan 1;23(1):1-11. doi: 10.1101/gad.1735809.
4
Dendrites of mammalian neurons contain specialized P-body-like structures that respond to neuronal activation.哺乳动物神经元的树突含有对神经元激活作出反应的特殊的类P小体结构。
J Neurosci. 2008 Dec 17;28(51):13793-804. doi: 10.1523/JNEUROSCI.4155-08.2008.
5
Cells lacking the fragile X mental retardation protein (FMRP) have normal RISC activity but exhibit altered stress granule assembly.缺乏脆性X智力低下蛋白(FMRP)的细胞具有正常的RNA诱导沉默复合体(RISC)活性,但表现出应激颗粒组装改变。
Mol Biol Cell. 2009 Jan;20(1):428-37. doi: 10.1091/mbc.e08-07-0737. Epub 2008 Nov 12.
6
Fragile X syndrome: loss of local mRNA regulation alters synaptic development and function.脆性X综合征:局部mRNA调控的丧失改变突触发育和功能。
Neuron. 2008 Oct 23;60(2):201-14. doi: 10.1016/j.neuron.2008.10.004.
7
GLD2 poly(A) polymerase is required for long-term memory.长期记忆需要GLD2聚腺苷酸聚合酶。
Proc Natl Acad Sci U S A. 2008 Sep 23;105(38):14644-9. doi: 10.1073/pnas.0803185105. Epub 2008 Sep 9.
8
Excess protein synthesis in Drosophila fragile X mutants impairs long-term memory.果蝇脆性X突变体中蛋白质合成过量会损害长期记忆。
Nat Neurosci. 2008 Oct;11(10):1143-5. doi: 10.1038/nn.2175. Epub 2008 Sep 7.
9
P68 RNA helicase (DDX5) alters activity of cis- and trans-acting factors of the alternative splicing of H-Ras.P68 RNA解旋酶(DDX5)改变H-Ras可变剪接的顺式和反式作用因子的活性。
PLoS One. 2008 Aug 13;3(8):e2926. doi: 10.1371/journal.pone.0002926.
10
The microRNA pathway and fragile X mental retardation protein.微小RNA途径与脆性X智力低下蛋白
Biochim Biophys Acta. 2008 Nov;1779(11):702-5. doi: 10.1016/j.bbagrm.2008.07.003. Epub 2008 Jul 18.

果蝇中 dFMR1 的遗传修饰物编码 RNA 颗粒成分。

Genetic modifiers of dFMR1 encode RNA granule components in Drosophila.

机构信息

Smurfit Institute of Genetics and Trinity College Institute for Neuroscience, Trinity College Dublin, Dublin-2, Ireland.

出版信息

Genetics. 2009 Aug;182(4):1051-60. doi: 10.1534/genetics.109.103234. Epub 2009 Jun 1.

DOI:10.1534/genetics.109.103234
PMID:19487564
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2728847/
Abstract

Mechanisms of neuronal mRNA localization and translation are of considerable biological interest. Spatially regulated mRNA translation contributes to cell-fate decisions and axon guidance during development, as well as to long-term synaptic plasticity in adulthood. The Fragile-X Mental Retardation protein (FMRP/dFMR1) is one of the best-studied neuronal translational control molecules and here we describe the identification and early characterization of proteins likely to function in the dFMR1 pathway. Induction of the dFMR1 in sevenless-expressing cells of the Drosophila eye causes a disorganized (rough) eye through a mechanism that requires residues necessary for dFMR1/FMRP's translational repressor function. Several mutations in dco, orb2, pAbp, rm62, and smD3 genes dominantly suppress the sev-dfmr1 rough-eye phenotype, suggesting that they are required for dFMR1-mediated processes. The encoded proteins localize to dFMR1-containing neuronal mRNPs in neurites of cultured neurons, and/or have an effect on dendritic branching predicted for bona fide neuronal translational repressors. Genetic mosaic analyses indicate that dco, orb2, rm62, smD3, and dfmr1 are dispensable for translational repression of hid, a microRNA target gene, known to be repressed in wing discs by the bantam miRNA. Thus, the encoded proteins may function as miRNA- and/or mRNA-specific translational regulators in vivo.

摘要

神经元 mRNA 定位和翻译的机制具有相当大的生物学意义。空间调节的 mRNA 翻译有助于发育过程中的细胞命运决定和轴突导向,以及成年期的长期突触可塑性。脆性 X 智力迟钝蛋白(FMRP/dFMR1)是研究最深入的神经元翻译控制分子之一,在这里我们描述了可能在 dFMR1 途径中发挥作用的蛋白质的鉴定和早期特征。在果蝇眼睛中表达 sevenless 的细胞中诱导 dFMR1 会导致眼睛无序(粗糙),这一机制需要 dFMR1/FMRP 的翻译抑制剂功能所必需的残基。dco、orb2、pAbp、rm62 和 smD3 基因中的几个突变显性抑制 sev-dfmr1 粗糙眼表型,表明它们是 dFMR1 介导的过程所必需的。编码蛋白定位于培养神经元神经突中的含 dFMR1 的神经元 mRNP 中,并且/或者对树突分支有影响,这是真正的神经元翻译抑制剂所预测的。遗传镶嵌分析表明,dco、orb2、rm62、smD3 和 dfmr1 对于 hid 的翻译抑制是可有可无的,hid 是一个 microRNA 靶基因,已知在翅膀盘中被 bantam miRNA 抑制。因此,这些编码蛋白可能在体内作为 miRNA 和/或 mRNA 特异性翻译调节剂发挥作用。