Fdez Elena, Madero-Pérez Jesús, Lara Ordóñez Antonio J, Naaldijk Yahaira, Fasiczka Rachel, Aiastui Ana, Ruiz-Martínez Javier, López de Munain Adolfo, Cowley Sally A, Wade-Martins Richard, Hilfiker Sabine
Institute of Parasitology and Biomedicine "López-Neyra", Consejo Superior de Investigaciones Científicas (CSIC), 18016 Granada, Spain.
Department of Anesthesiology, Department of Pharmacology, Physiology and Neuroscience, New Jersey Medical School, Rutgers, The State University of New Jersey, Newark, NJ 07103, USA.
iScience. 2022 May 30;25(6):104476. doi: 10.1016/j.isci.2022.104476. eCollection 2022 Jun 17.
Mutations in LRRK2 increase its kinase activity and cause Parkinson's disease. LRRK2 phosphorylates a subset of Rab proteins which allows for their binding to RILPL1. The phospho-Rab/RILPL1 interaction causes deficits in ciliogenesis and interferes with the cohesion of duplicated centrosomes. We show here that centrosomal deficits mediated by pathogenic LRRK2 can also be observed in patient-derived iPS cells, and we have used transiently transfected cell lines to identify the underlying mechanism. The LRRK2-mediated centrosomal cohesion deficits are dependent on both the GTP conformation and phosphorylation status of the Rab proteins. Pathogenic LRRK2 does not displace proteinaceous linker proteins which hold duplicated centrosomes together, but causes the centrosomal displacement of CDK5RAP2, a protein critical for centrosome cohesion. The LRRK2-mediated centrosomal displacement of CDK5RAP2 requires RILPL1 and phospho-Rab proteins, which stably associate with centrosomes. These data provide fundamental information as to how pathogenic LRRK2 alters the normal physiology of a cell.
LRRK2基因的突变会增加其激酶活性并导致帕金森病。LRRK2使一部分Rab蛋白磷酸化,从而使其能够与RILPL1结合。磷酸化的Rab/RILPL1相互作用会导致纤毛发生缺陷,并干扰复制后的中心体的黏附。我们在此表明,在患者来源的诱导多能干细胞中也能观察到由致病性LRRK2介导的中心体缺陷,并且我们利用瞬时转染的细胞系来确定其潜在机制。LRRK2介导的中心体黏附缺陷取决于Rab蛋白的GTP构象和磷酸化状态。致病性LRRK2不会取代将复制后的中心体维系在一起的蛋白质连接蛋白,而是会导致CDK5RAP2(一种对中心体黏附至关重要的蛋白质)发生中心体移位。LRRK2介导的CDK5RAP2中心体移位需要RILPL1和磷酸化的Rab蛋白,它们与中心体稳定结合。这些数据为致病性LRRK2如何改变细胞的正常生理机能提供了基础信息。