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PTBPTB switch:a post-transcriptional mechanism for programming neuronal differentiation

机译:PTB / nPTB开关:用于编程神经元分化的转录后机制。

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摘要

Neuronal differentiation involves extensive reprogram-ming of gene expression. Many neuronal-specific genes are actively repressed in nonneuronal cells, while many others are induced in response to cell differentiation cues.Together these constitute the transcriptome in neurons to instruct specific neuronal functions (Rosen-feld et al. 2006).The transcriptome in neurons is further diversified by alternative splicing, arising from the expression of a number of neuronal-specific RNA-binding splicing regulators (Black and Grabowski 2003). In this issue of Genes &. Development, Boutz et al. (2007b) report a novel switch in the expression of a pair of related splicing regulators that occurs during neuronal differentiation. These proteins, known as polypyrimidine tract-binding proteins (PTB) and neural PTB (nPTB), are structurally and functionally similar,but PTB is widely expressed in nonneuronal cells, and nPTB is restricted to neurons.Remarkably,-25% of neuronally induced alternative splicing events detected by mRNA isoform-sen-sitive splicing arrays are estimated to result from the down-regulation of PTB, and the up-regulation of its neuronal-specific cousin nPTB#
机译:神经元分化涉及基因表达的广泛重编程。许多神经元特异性基因在非神经元细胞中被积极抑制,而其他许多神经元基因则响应细胞分化提示而被诱导,它们共同构成神经元中的转录组,以指导特定的神经元功能(Rosen-feld et al.2006)。由于许多神经元特异性RNA结合剪接调节子的表达而引起的选择性剪接进一步使Blade更加多样化(Black and Grabowski 2003)。在本期《基因与》中。发展,Boutz等。 (2007b)报道了在神经元分化期间发生的一对相关剪接调节子的表达中的新颖转换。这些蛋白被称为聚嘧啶束结合蛋白(PTB)和神经PTB(nPTB),在结构和功能上相似,但是PTB在非神经元细胞中广泛表达,并且nPTB限于神经元。值得注意的是,-25%的神经元诱导由mRNA亚型敏感剪接阵列检测到的其他剪接事件估计是由于PTB的下调及其神经元特异性表亲nPTB的上调所致

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