4.5 Article

Phos-tag analysis of Rab10 phosphorylation by LRRK2: a powerful assay for assessing kinase function and inhibitors

期刊

BIOCHEMICAL JOURNAL
卷 473, 期 -, 页码 2671-2685

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BCJ20160557

关键词

Parkinson's disease; protein kinases; Rab GTPase; signal transduction

资金

  1. Michael J. Fox Foundation for Parkinson's research [357811350 R60]
  2. Medical Research Council [MC_UU_12016/2]
  3. AstraZeneca
  4. Boehringer-Ingelheim
  5. GlaxoSmithKline
  6. Merck KGaA
  7. Janssen Pharmaceutica
  8. Pfizer
  9. Health and Medical Research Fund, Food and Health Bureau, Hong Kong [1120976]
  10. Parkinson's UK [H-0901, H-1101] Funding Source: researchfish
  11. MRC [MC_UU_12016/2, G0700656] Funding Source: UKRI

向作者/读者索取更多资源

Autosomal dominant mutations that activate the leucine-rich repeat kinase 2 (LRRK2) cause inherited Parkinson's disease. Recent work has revealed that LRRK2 directly phosphorylates a conserved threonine/serine residue in the effector-binding switch-II motif of a number of Rab GTPase proteins, including Rab10. Here we describe a facile and robust method to assess phosphorylation of endogenous Rab10 in mouse embryonic fibroblasts (MEFs), lung and spleen-derived B-cells, based on the ability of the Phos-tag reagent to retard the electrophoretic mobility of LRRK2-phosphorylated Rab10. We exploit this assay to show that phosphorylation of Rab10 is ablated in kinase-inactive LRRK2[D2017A] knockin MEFs and mouse lung, demonstrating that LRRK2 is the major Rab10 kinase in these cells/tissue. We also establish that the Phos-tag assay can be deployed to monitor the impact that activating LRRK2 pathogenic (G2019S and R1441G) knockin mutations have on stimulating Rab10 phosphorylation. We show that upon addition of LRRK2 inhibitors, Rab10 is dephosphorylated within 1-2 min, markedly more rapidly than the Ser(935) and Ser(1292) biomarker sites that require 40-80 min. Furthermore, we find that phosphorylation of Rab10 is suppressed in LRRK2[S910A+S935A] knockinMEFs indicating that phosphorylation of Ser(910) and Ser(935) and potentially 14-3-3 binding play a role in facilitating the phosphorylation of Rab10 by LRRK2 in vivo. The Rab Phos-tag assay has the potential to significantly aid with evaluating the effect that inhibitors, mutations and other factors have on the LRRK2 signalling pathway.

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