A novel GTP-binding inhibitor, FX2149, attenuates LRRK2 toxicity in Parkinson's disease models
Tianxia Li1, Xinhua He2, Joseph M Thomas1
1Department of Pharmaceutical Sciences, University of Maryland School of Pharmacy, Baltimore, MD, United States of America.
Abstract:
Leucine-rich repeat kinase-2 (LRRK2), a cytoplasmic protein containing both GTP binding and kinase activities, has emerged as a highly promising drug target for Parkinson's disease (PD). The majority of PD-linked mutations in LRRK2 dysregulate its GTP binding and kinase activities, which may contribute to neurodegeneration. While most known LRRK2 inhibitors are developed to target the kinase domain, we have recently identified the first LRRK2 GTP binding inhibitor, 68, which not only inhibits LRRK2 GTP binding and kinase activities with high potency in vitro, but also reduces neurodegeneration. However, the in vivo effects of 68 are low due to its limited brain penetration. To address this problem, we reported herein the design and synthesis of a novel analog of 68, FX2149, aimed at increasing the in vivo efficacy. Pharmacological characterization of FX2149 exhibited inhibition of LRRK2 GTP binding activity by ~90% at a concentration of 10 nM using in vitro assays. Furthermore, FX2149 protected against mutant LRRK2-induced neurodegeneration in SH-SY5Y cells at 50-200 nM concentrations. Importantly, FX2149 at 10 mg/kg (i.p.) showed significant brain inhibition efficacy equivalent to that of 68 at 20 mg/kg (i.p.), determined by mouse brain LRRK2 GTP binding and phosphorylation assays. Furthermore, FX2149 at 10 mg/kg (i.p.) attenuated lipopolysaccharide (LPS)-induced microglia activation and LRRK2 upregulation in a mouse neuroinflammation model comparable to 68 at 20 mg/kg (i.p.). Our results highlight a novel GTP binding inhibitor with better brain efficacy, which represents a new lead compound for further understanding PD pathogenesis and therapeutic studies.
Insights
A new drug candidate, FX2149, effectively inhibits Leucine-rich repeat kinase-2 (LRRK2) GTP binding in the brain, offering potential for Parkinson's disease (PD) treatment by reducing neuroinflammation and neurodegeneration.
Area of Science:
- Neuroscience
- Pharmacology
- Drug Discovery
Background:
- Leucine-rich repeat kinase-2 (LRRK2) is a key drug target for Parkinson's disease (PD).
- Mutations in LRRK2 are linked to PD pathogenesis by affecting its GTP binding and kinase activities.
- Existing LRRK2 inhibitors primarily target the kinase domain, with limited success in brain penetration.
Purpose of the Study:
- To design and synthesize a novel LRRK2 GTP binding inhibitor, FX2149, with improved brain penetration and in vivo efficacy.
- To evaluate the pharmacological properties and therapeutic potential of FX2149 in preclinical models of PD and neuroinflammation.
Main Methods:
- In vitro assays to assess LRRK2 GTP binding and kinase inhibition by FX2149.
- Cell-based assays using SH-SY5Y cells to evaluate neuroprotection against mutant LRRK2.
- In vivo studies in mice to determine brain penetration, LRRK2 inhibition, and effects on neuroinflammation models.
Main Results:
- FX2149 potently inhibited LRRK2 GTP binding in vitro (~90% inhibition at 10 nM).
- FX2149 demonstrated neuroprotective effects in cell models and superior brain inhibition efficacy compared to the parent compound 68 in mice.
- FX2149 attenuated LPS-induced microglia activation and LRRK2 upregulation in a mouse neuroinflammation model.
Conclusions:
- FX2149 is a novel LRRK2 GTP binding inhibitor with enhanced brain efficacy.
- This compound represents a promising lead for developing new therapies for Parkinson's disease.
- FX2149 facilitates further research into PD pathogenesis and therapeutic strategies.
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