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酪氨酸激酶c-Abl的激活促成了α-突触核蛋白诱导的神经退行性变。

Activation of tyrosine kinase c-Abl contributes to α-synuclein-induced neurodegeneration.

作者信息

Brahmachari Saurav, Ge Preston, Lee Su Hyun, Kim Donghoon, Karuppagounder Senthilkumar S, Kumar Manoj, Mao Xiaobo, Shin Joo Ho, Lee Yunjong, Pletnikova Olga, Troncoso Juan C, Dawson Valina L, Dawson Ted M, Ko Han Seok

出版信息

J Clin Invest. 2016 Aug 1;126(8):2970-88. doi: 10.1172/JCI85456. Epub 2016 Jun 27.

Abstract

Aggregation of α-synuclein contributes to the formation of Lewy bodies and neurites, the pathologic hallmarks of Parkinson disease (PD) and α-synucleinopathies. Although a number of human mutations have been identified in familial PD, the mechanisms that promote α-synuclein accumulation and toxicity are poorly understood. Here, we report that hyperactivity of the nonreceptor tyrosine kinase c-Abl critically regulates α-synuclein-induced neuropathology. In mice expressing a human α-synucleinopathy-associated mutation (hA53Tα-syn mice), deletion of the gene encoding c-Abl reduced α-synuclein aggregation, neuropathology, and neurobehavioral deficits. Conversely, overexpression of constitutively active c-Abl in hA53Tα-syn mice accelerated α-synuclein aggregation, neuropathology, and neurobehavioral deficits. Moreover, c-Abl activation led to an age-dependent increase in phosphotyrosine 39 α-synuclein. In human postmortem samples, there was an accumulation of phosphotyrosine 39 α-synuclein in brain tissues and Lewy bodies of PD patients compared with age-matched controls. Furthermore, in vitro studies show that c-Abl phosphorylation of α-synuclein at tyrosine 39 enhances α-synuclein aggregation. Taken together, this work establishes a critical role for c-Abl in α-synuclein-induced neurodegeneration and demonstrates that selective inhibition of c-Abl may be neuroprotective. This study further indicates that phosphotyrosine 39 α-synuclein is a potential disease indicator for PD and related α-synucleinopathies.

摘要

α-突触核蛋白的聚集促成了路易小体和神经突的形成,而路易小体和神经突是帕金森病(PD)和α-突触核蛋白病的病理标志。尽管在家族性PD中已鉴定出许多人类突变,但促进α-突触核蛋白积累和毒性的机制仍知之甚少。在此,我们报告非受体酪氨酸激酶c-Abl的过度活跃对α-突触核蛋白诱导的神经病理学起关键调节作用。在表达与人类α-突触核蛋白病相关突变的小鼠(hA53Tα-syn小鼠)中,编码c-Abl的基因缺失减少了α-突触核蛋白的聚集、神经病理学改变和神经行为缺陷。相反,在hA53Tα-syn小鼠中组成型激活的c-Abl的过表达加速了α-突触核蛋白的聚集、神经病理学改变和神经行为缺陷。此外,c-Abl激活导致α-突触核蛋白酪氨酸39位点的磷酸化随年龄增长而增加。在人类尸检样本中,与年龄匹配的对照组相比,PD患者的脑组织和路易小体中存在酪氨酸39磷酸化α-突触核蛋白的积累。此外,体外研究表明,c-Abl使α-突触核蛋白酪氨酸39位点磷酸化会增强α-突触核蛋白的聚集。综上所述,这项工作确立了c-Abl在α-突触核蛋白诱导的神经退行性变中的关键作用,并表明选择性抑制c-Abl可能具有神经保护作用。这项研究进一步表明,酪氨酸39磷酸化α-突触核蛋白是PD及相关α-突触核蛋白病的潜在疾病指标。

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