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亲环素A参与脑缺氧缺血后神经元中凋亡诱导因子的核转位。

Cyclophilin A participates in the nuclear translocation of apoptosis-inducing factor in neurons after cerebral hypoxia-ischemia.

作者信息

Zhu Changlian, Wang Xiaoyang, Deinum Johanna, Huang Zhiheng, Gao Jianfeng, Modjtahedi Nazanine, Neagu Martha R, Nilsson Michael, Eriksson Peter S, Hagberg Henrik, Luban Jeremy, Kroemer Guido, Blomgren Klas

机构信息

Center for Brain Repair and Rehabilitation, Institute of Neuroscience and Physiology, Göteborg University, 405 30 Göteborg, Sweden.

出版信息

J Exp Med. 2007 Aug 6;204(8):1741-8. doi: 10.1084/jem.20070193. Epub 2007 Jul 16.

Abstract

Upon cerebral hypoxia-ischemia (HI), apoptosis-inducing factor (AIF) can move from mitochondria to nuclei, participate in chromatinolysis, and contribute to the execution of cell death. Previous work (Cande, C., N. Vahsen, I. Kouranti, E. Schmitt, E. Daugas, C. Spahr, J. Luban, R.T. Kroemer, F. Giordanetto, C. Garrido, et al. 2004. Oncogene. 23:1514-1521) performed in vitro suggests that AIF must interact with cyclophilin A (CypA) to form a proapoptotic DNA degradation complex. We addressed the question as to whether elimination of CypA may afford neuroprotection in vivo. 9-d-old wild-type (WT), CypA(+/-), or CypA(-/-) mice were subjected to unilateral cerebral HI. The infarct volume after HI was reduced by 47% (P = 0.0089) in CypA(-/-) mice compared with their WT littermates. Importantly, CypA(-/-) neurons failed to manifest the HI-induced nuclear translocation of AIF that was observed in WT neurons. Conversely, CypA accumulated within the nuclei of damaged neurons after HI, and this nuclear translocation of CypA was suppressed in AIF-deficient harlequin mice. Immunoprecipitation of AIF revealed coprecipitation of CypA, but only in injured, ischemic tissue. Surface plasmon resonance revealed direct molecular interactions between recombinant AIF and CypA. These data indicate that the lethal translocation of AIF to the nucleus requires interaction with CypA, suggesting a model in which two proteins that normally reside in separate cytoplasmic compartments acquire novel properties when moving together to the nucleus.

摘要

在脑缺氧缺血(HI)时,凋亡诱导因子(AIF)可从线粒体转移至细胞核,参与染色质溶解,并促使细胞死亡的发生。先前的体外研究工作(Cande, C., N. Vahsen, I. Kouranti, E. Schmitt, E. Daugas, C. Spahr, J. Luban, R.T. Kroemer, F. Giordanetto, C. Garrido等人,2004年。《癌基因》。23:1514 - 1521)表明,AIF必须与亲环素A(CypA)相互作用以形成促凋亡DNA降解复合物。我们探讨了消除CypA在体内是否能提供神经保护作用这一问题。对9日龄的野生型(WT)、CypA(+/-)或CypA(-/-)小鼠进行单侧脑HI处理。与野生型同窝小鼠相比,CypA(-/-)小鼠HI后的梗死体积减少了47%(P = 0.0089)。重要的是,CypA(-/-)神经元未表现出野生型神经元中观察到的HI诱导的AIF核转位。相反,HI后CypA在受损神经元的细胞核内积聚,而在AIF缺陷的丑角小鼠中,CypA的这种核转位受到抑制。AIF的免疫沉淀显示CypA共沉淀,但仅在损伤的缺血组织中。表面等离子体共振显示重组AIF与CypA之间存在直接分子相互作用。这些数据表明,AIF向细胞核的致命转位需要与CypA相互作用,提示了一种模型,即通常位于不同细胞质区室的两种蛋白质在共同转移至细胞核时获得了新特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01bc/2118669/16c1858905b1/jem2041741f01.jpg

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