Leucine-Rich Repeat Serine-Threonine Protein Kinase-2

富含亮氨酸的重复丝氨酸 - 苏氨酸蛋白激酶 - 2
  • 文章类型: Journal Article
    LRRK2(富含亮氨酸的重复激酶2)的突变已被鉴定为帕金森病(PD)的主要遗传决定因素。最普遍的突变,G2019S,增加LRRK2的激酶活性,因此,了解LRRK2磷酸化的位点和底物对于了解其在疾病病因学中的作用至关重要.由于这种激酶的生理底物是未知的,我们着手通过鉴定LRRK2G2019S的有利磷酸化基序来揭示LRRK2G2019S的潜在靶标。定向肽文库的非偏倚筛选阐明了作为核心依赖性底物序列的F/Y-x-T-x-R/K。共有磷酸化基序的生物信息学分析确定了几种在神经元病理生理学中起潜在作用的新型候选底物。对应于大多数PD相关蛋白的肽在体外被LRRK2有效磷酸化。有趣的是,在LRRK2本身中也鉴定了磷酸。通过质谱和生物化学方法在LRRK2内的唯一F-x-T-x-R位点(Thr1410)检测自磷酸化。通过测量突变对自身磷酸化的影响来评估该位点的相关性,激酶活性,GTP结合,GTP水解,和LRRK2多聚化。这些研究表明,Thr1410的修饰巧妙地调节了LRRK2对GTP的水解,但对其他测量参数的影响很小。一起鉴定LRRK2的磷酸化一致基序,以及其磷酸化的功能后果,提供对下游LRRK2信号通路的见解。
    Mutations in LRRK2 (leucine-rich repeat kinase 2) have been identified as major genetic determinants of Parkinson\'s disease (PD). The most prevalent mutation, G2019S, increases LRRK2\'s kinase activity, therefore understanding the sites and substrates that LRRK2 phosphorylates is critical to understanding its role in disease aetiology. Since the physiological substrates of this kinase are unknown, we set out to reveal potential targets of LRRK2 G2019S by identifying its favored phosphorylation motif. A non-biased screen of an oriented peptide library elucidated F/Y-x-T-x-R/K as the core dependent substrate sequence. Bioinformatic analysis of the consensus phosphorylation motif identified several novel candidate substrates that potentially function in neuronal pathophysiology. Peptides corresponding to the most PD relevant proteins were efficiently phosphorylated by LRRK2 in vitro. Interestingly, the phosphomotif was also identified within LRRK2 itself. Autophosphorylation was detected by mass spectrometry and biochemical means at the only F-x-T-x-R site (Thr 1410) within LRRK2. The relevance of this site was assessed by measuring effects of mutations on autophosphorylation, kinase activity, GTP binding, GTP hydrolysis, and LRRK2 multimerization. These studies indicate that modification of Thr1410 subtly regulates GTP hydrolysis by LRRK2, but with minimal effects on other parameters measured. Together the identification of LRRK2\'s phosphorylation consensus motif, and the functional consequences of its phosphorylation, provide insights into downstream LRRK2-signaling pathways.
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