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阻断 PIAS3 介导的 MLK3 的 SUMO 化修饰可减轻卒中后神经元损伤及认知和感觉运动行为缺陷。

Disrupting PIAS3-mediated SUMOylation of MLK3 ameliorates poststroke neuronal damage and deficits in cognitive and sensorimotor behaviors.

机构信息

Research Center for Biochemistry and Molecular Biology, Jiangsu Key Laboratory of Brain Disease Bioinformation, Xuzhou Medical University, Xuzhou, 221004, Jiangsu, China.

出版信息

Cell Mol Life Sci. 2024 Mar 8;81(1):119. doi: 10.1007/s00018-024-05166-7.

Abstract

Activated small ubiquitin-like modifiers (SUMOs) have been implicated in neuropathological processes following ischemic stroke. However, the target proteins of SUMOylation and their contribution to neuronal injury remain to be elucidated. MLK3 (mixed-lineage kinase 3), a member of the mitogen-activated protein kinase kinase kinase (MAPKKK) family, is a critical regulator of neuronal lesions following cerebral ischemia. Here, we found that SUMOylation of MLK3 increases in both global and focal ischemic rodent models and primary neuronal models of oxygen and glucose deprivation (OGD). SUMO1 conjugation at the Lys401 site of MLK3 promoted its activation, stimulated its downstream p38/c-Jun N-terminal kinase (JNK) cascades, and led to cell apoptosis. The interaction of MLK3 with PIAS3, a SUMO ligase, was elevated following ischemia and reperfusion. The PINIT domain of PIAS3 was involved in direct interactions with MLK3. Overexpression of the PINIT domain of PIAS3 disrupted the MLK3-PIAS3 interaction, inhibited SUMOylation of MLK3, suppressed downstream signaling, and reduced cell apoptosis and neurite damage. In rodent ischemic models, the overexpression of the PINIT domain reduced brain lesions and alleviated deficits in learning, memory, and sensorimotor functions. Our findings demonstrate that brain ischemia-induced MLK3 SUMOylation by PIAS3 is a potential target against poststroke neuronal lesions and behavioral impairments.

摘要

激活的小泛素样修饰物 (SUMO) 已被牵涉到缺血性中风后的神经病理过程中。然而,SUMOylation 的靶蛋白及其对神经元损伤的贡献仍有待阐明。MLK3(混合谱系激酶 3)是丝裂原活化蛋白激酶激酶激酶(MAPKKK)家族的成员,是脑缺血后神经元损伤的关键调节因子。在这里,我们发现 SUMOylation 的 MLK3 增加了全局和局灶性缺血啮齿动物模型和氧葡萄糖剥夺(OGD)的原代神经元模型。MLK3 的 Lys401 位点上的 SUMO1 缀合促进了其激活,刺激了其下游的 p38/c-Jun N-末端激酶(JNK)级联反应,并导致细胞凋亡。缺血和再灌注后,MLK3 与 SUMO 连接酶 PIAS3 的相互作用增加。PIAS3 的 PINIT 结构域参与与 MLK3 的直接相互作用。PIAS3 的 PINIT 结构域的过表达破坏了 MLK3-PIAS3 相互作用,抑制了 MLK3 的 SUMOylation,抑制了下游信号,并减少了细胞凋亡和神经突损伤。在啮齿动物缺血模型中,PIAS3 的 PINIT 结构域的过表达减少了脑损伤,并减轻了学习、记忆和感觉运动功能的缺陷。我们的研究结果表明,由 PIAS3 诱导的脑缺血后 MLK3 SUMOylation 是针对中风后神经元损伤和行为障碍的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7294/11071951/fd15bcd258f4/18_2024_5166_Fig1_HTML.jpg

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