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Impaired Cortical Compensation in GBA1-Associated Parkinson’s Disease

K. Steidel, M. Johansson, B. Bloem, L. Pavelka, T. Lüth, C. Pauly, E. Soboleva, S. Jónsdóttir, C. Much, S. Schaake, L. Vilas Boas, E. Thiry, G. Zelimkhanov, N. Brüggemann, C. Klein, J. Trinh, R. Krüger, R. Helmich (Nijmegen, Netherlands)

Meeting: 2026 International Congress

Keywords: Magnetic resonance imaging(MRI), Parkinson’s

Category: Parkinson's disease: Neuroimaging

Objective: To test whether GBA1 mutations are associated with impaired cortical compensation in Parkinson’s disease (PD) using a unique 2×2 design to parse the effect of gene and disease.

Background: GBA1, encoding glucocerebrosidase, harbors the strongest known genetic risk variants for PD that are associated with a more severe phenotype. Recently, we have demonstrated that motor impairment in PD is characterized by loss of compensatory function in the parieto-premotor cortex. Given evidence for greater cortical pathology in GBA1-variant carriers in PD (PDGBA1+), cortical compensation may be disproportionally impaired.

Method: 90 participants (controls: GBA1+ n=24, GBA1− n=24; PD: GBA1+ n=16, GBA1− n=26; mean PD duration 5.59 years) from the Luxembourg Parkinson’s Study1 (LuxPark) underwent 3T functional MRI while performing an action selection task designed to elicit PD-related compensatory activity. Diffusion MRI was additionally used to investigate underlying structural deficits in the substantia nigra and cortex. GBA1 status were detected by long-read and Sanger sequencing. Variant pathogenicity was classified using the GBA1-PD browser. Linear mixed-effects modeling was used to analyze effects of disease (PD vs. Control) and genetic status (GBA1- vs. GBA1+) on behavioral performance and brain measurements. Findings were validated in the Personalized Parkinson Project2 (PPP; 286 PDGBA1− and 49 PDGBA1+, mean PD duration 2.76 years).

Results: In LuxPark, PDGBA1+  made more errors on the task (diagnosis × GBA1 interaction, p=0.01) and tended to have greater motor impairment (MDS-UPDRS part III, p=0.09) than PDGBA-. PDGBA+ also had lower parieto-premotor selection-related activity, suggesting reduced compensation (diagnosis × GBA1 interaction, p<0.001, which correlated with higher clinical bradykinesia/rigidity [figure1]. Nigral free water was increased in PD (p<0.001) but did not differ by GBA1 status. Parietal mean diffusivity was higher in PDGBA1+ (p=0.021, uncorrected), which was associated with higher bradykinesia/rigidity [figure2]. In PPP, GBA1 pathogenicity was associated with reduced selection-related activity (p=0.012). There were no further GBA1-related effects on clinical or MRI measurements.

Conclusion: Our findings suggest that GBA1 variants impair cortical compensation, potentially by exacerbating microstructural cortical damage. This effect depends on variant pathogenicity and emerges with advancing disease.

Figure1: GBA1 impairs cortical compensation in PD

Figure1: GBA1 impairs cortical compensation in PD

Figure 2: GBA1 impairs cortical integrity in PD

Figure 2: GBA1 impairs cortical integrity in PD

References: 1. Pavelka L, Rawal R, Ghosh S, et al. Luxembourg Parkinson’s study -comprehensive baseline analysis of Parkinson’s disease and atypical parkinsonism. Front Neurol. 2023;14:1330321. doi:10.3389/fneur.2023.1330321
2. Bloem BR, Marks WJ, Silva De Lima AL, et al. The Personalized Parkinson Project: examining disease progression through broad biomarkers in early Parkinson’s disease. BMC Neurol. 2019;19(1):160. doi:10.1186/s12883-019-1394-3

To cite this abstract in AMA style:

K. Steidel, M. Johansson, B. Bloem, L. Pavelka, T. Lüth, C. Pauly, E. Soboleva, S. Jónsdóttir, C. Much, S. Schaake, L. Vilas Boas, E. Thiry, G. Zelimkhanov, N. Brüggemann, C. Klein, J. Trinh, R. Krüger, R. Helmich. Impaired Cortical Compensation in GBA1-Associated Parkinson’s Disease [abstract]. Mov Disord. 2026; 41 (suppl 1). https://www.mdsabstracts.org/abstract/impaired-cortical-compensation-in-gba1-associated-parkinsons-disease/. Accessed October 1, 2026.
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