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首页> 外文期刊>Cell >SAM68 regulates neuronal activity-dependent alternative splicing of neurexin-1
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SAM68 regulates neuronal activity-dependent alternative splicing of neurexin-1

机译:SAM68调节神经元活动依赖神经氨酸-1的选择性剪接。

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摘要

The assembly of synapses and neuronal circuits relies on an array of molecular recognition events and their modification by neuronal activity. Neurexins are a highly polymorphic family of synaptic receptors diversified by extensive alternative splicing. Neurexin variants exhibit distinct isoform-specific biochemical interactions and synapse assembly functions, but the mechanisms governing splice isoform choice are not understood. We demonstrate that Nrxn1 alternative splicing is temporally and spatially controlled in the mouse brain. Neuronal activity triggers a shift in Nrxn1 splice isoform choice via calcium/calmodulin-dependent kinase IV signaling. Activity-dependent alternative splicing of Nrxn1 requires the KH-domain RNA-binding protein SAM68 that associates with RNA response elements in the Nrxn1 pre-mRNA. Our findings uncover SAM68 as a key regulator of dynamic control of Nrxn1 molecular diversity and activity-dependent alternative splicing in the central nervous system.
机译:突触和神经元回路的组装依赖于一系列分子识别事件及其通过神经元活性的修饰。神经毒素是突触受体的高度多态性家族,通过广泛的选择性剪接而多样化。 Neurexin变体表现出不同的异构体特异性生化相互作用和突触装配功能,但尚不清楚控制剪接异构体选择的机制。我们证明,Nrxn1替代剪接是在小鼠大脑中的时空控制。神经元活动通过钙/钙调蛋白依赖性激酶IV信号触发Nrxn1剪接异构体选择的转变。 Nrxn1的依赖于活性的选择性剪接需要与Nrxn1 pre-mRNA中的RNA反应元件相关的KH域RNA结合蛋白SAM68。我们的发现发现SAM68是动态控制Nrxn1分子多样性和中枢神经系统中依赖于活性的选择性剪接的关键调节剂。

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