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Ubiquitin carboxy-terminal hydrolase L1 binds to and stabilizes monoubiquitin in neuron.

机译:泛素羧基末端水解酶L1结合并稳定神经元中的单泛素。

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摘要

Mammalian neuronal cells abundantly express a deubiquitylating enzyme, ubiquitin carboxy-terminal hydrolase 1 (UCH L1). Mutations in UCH L1 are linked to Parkinson's disease as well as gracile axonal dystrophy (gad) in mice. In contrast to the UCH L3 isozyme that is universally expressed in all tissues, UCH L1 is expressed exclusively in neurons and testis/ovary. We found that UCH L1 associates and colocalizes with monoubiquitin and elongates ubiquitin half-life. The gad mouse, in which the function of UCH L1 is lost, exhibited a reduced level of monoubiquitin in neurons. In contrast, overexpression of UCH L1 caused an increase in the level of ubiquitin in both cultured cells and mice. These data suggest that UCH L1, with avidity and affinity for ubiquitin, insures ubiquitin stability within neurons. This study is the first to show the function of UCH L1 in vivo.
机译:哺乳动物神经元细胞大量表达去泛素化酶,泛素羧基末端水解酶1(UCH L1)。 UCH L1中的突变与帕金森氏病以及小鼠中轻度的轴索营养不良(gad)有关。与在所有组织中普遍表达的UCH L3同工酶相反,UCH L1仅在神经元和睾丸/卵巢中表达。我们发现UCH L1与单泛素相关联并共定位,并延长了泛素半衰期。 UCH L1功能丧失的gad小鼠在神经元中的单泛素水平降低。相反,UCH L1的过表达导致培养的细胞和小鼠中泛素水平的升高。这些数据表明,具有泛素亲和力的UCH L1可确保神经元内泛素的稳定性。这项研究是第一个在体内显示UCH L1功能的研究。

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