Department of Biochemistry and Molecular Biology, Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Parkville, Victoria, Australia.
Hum Mutat. 2012 Oct;33(10):1408-22. doi: 10.1002/humu.22127. Epub 2012 Jul 5.
Mutations of the phosphatase and tensin homolog (PTEN)-induced kinase 1 (PINK1) gene can cause early-onset familial Parkinson disease (PD). PINK1 encodes a neuroprotective protein kinase localized at the mitochondria, and its involvement in regulating mitochondrial dynamics, trafficking, structure, and function is well documented. Owing to the lack of information on structure and biochemical properties for PINK1, exactly how PINK1 exerts its neuroprotective function and how the PD-causative mutations impact on PINK1 structure and function remain unclear. As an approach to address these questions, we conducted bioinformatic analyses of the mitochondrial targeting, the transmembrane, and kinase domains of PINK1 to predict the motifs governing its regulation and function. Our report sheds light on how PINK1 is targeted to the mitochondria and how PINK1 is cleaved by mitochondrial peptidases. Moreover, it includes a potential optimal phosphorylation sequence preferred by the PINK1 kinase domain. On the basis of the results of our analyses, we predict how the PD-causative mutations affect processing of PINK1 in the mitochondria, PINK1 kinase activity, and substrate specificity. In summary, our results provide a conceptual framework for future investigation of the structural and biochemical basis of regulation and the neuroprotective mechanism of PINK1.
磷酸酶和张力蛋白同系物(PTEN)诱导的激酶 1(PINK1)基因突变可导致早发性家族性帕金森病(PD)。PINK1 编码一种位于线粒体的神经保护蛋白激酶,其参与调节线粒体动力学、运输、结构和功能已有充分记录。由于缺乏关于 PINK1 的结构和生化特性的信息,PINK1 如何发挥其神经保护功能以及 PD 致病突变如何影响 PINK1 的结构和功能仍不清楚。作为解决这些问题的一种方法,我们对 PINK1 的线粒体靶向、跨膜和激酶结构域进行了生物信息学分析,以预测调节其功能的基序。我们的报告阐明了 PINK1 如何靶向线粒体以及 PINK1 如何被线粒体肽酶切割。此外,它还包括 PINK1 激酶结构域偏好的潜在最佳磷酸化序列。基于我们分析的结果,我们预测 PD 致病突变如何影响 PINK1 在线粒体中的加工、PINK1 激酶活性和底物特异性。总之,我们的结果为进一步研究 PINK1 的调节结构和生化基础以及神经保护机制提供了一个概念框架。