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Kurdi, H.

Publications and source records attributed to Kurdi, H..

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Mitochondrial stress in Fabry disease

Fabry disease (FD) is clinically heterogeneous. As some GLA variants attain similar levels of residual activity but result in a range of phenotypes, our aim is to understand factors influencing phenotypic variability. The mitochondrial unfolded protein response (mtUPR) is a stress response mechanism activated by multiple forms of mitochondrial dysfunction including accumulation of misfolded protein. As mitochondrial dysfunction has been reported, we investigated intracellular levels of heat shock protein 60 (Hsp60) by western blotting in 27 FD patients: 11 N215S (7 males) and 16 non-N215S (7 males) vs 4 heathy controls (HC, 3 males and 1 female). Serum Fibroblast Growth Factor-21 (FGF21), and Growth Differentiation Factor-15 (GDF-15) were also measured. Clinical outcomes explored included the Mainz Severity Score Index (MSSI), the Age-Adjusting Severity Scores (AASS), estimated glomerular filtration rate (eGFR) and left ventricular mass indexed to height (LVMI). Globotriaosylsphingosine (lyso-Gb3) data was available for a subset of participants. Hsp60 showed no significant differences between groups (males FD: 0.29 vs HC: 0.11, females HC: 0.26 vs FD: 0.19 Hsp60/LC), however, differences among FD patients were noted. While some had over 2-fold that of HCs, others had less than half of HCs despite genotype and gender. When analysed in terms of severity scores, the N215S group with higher levels of Hsp60 corresponded with a milder phenotype. LVMI and eGFR also seemed to improve with higher levels of Hsp60 only for this group. In terms of FGF-21 and GDF-15, lower levels showed a trend with higher Hsp60 levels and LVMI in the N215S group. To conclude, our findings suggest a potential role for mtUPR activation, as evidenced by intracellular Hsp60 levels, in modulating cardiac and renal manifestations in Fabry disease. These preliminary associations highlight the need for longitudinal studies to validate Hsp60 and mitokines as biomarkers of disease progression, aiming to inform personalized approaches that improve outcomes across Fabry disease phenotypes.

pathology↗

Sex differences in alpha galactosidase protein processing and its impact on disease severity in Fabry disease

Fabry disease (FD) is an X-linked disorder due to mutations in the -galactosidase A (GLA) gene. The condition is characterized by low GLA activity and accumulation of toxic sphingolipids. Some patients present full disease symptoms whereas others have one system affected, generally the heart or kidney. This suggests that a mutation in the GLA gene is necessary to cause FD, but other factors may contribute to its clinical expression. To investigates the impact of GLA mutant protein processing on GLA activity and disease expression, 26 individuals with FD (14 males) were studied. Clinical outcomes explored included the Mainz Severity Score Index (MSSI), the Age-Adjusting Severity Scores (AASS), glomerular filtration rate (GFR), and left ventricular mass index (LVMI). Globotriaosylsphingosine (lyso-Gb3) data was available for a subset of participants. Whole cell lysates were employed to assess GLA activity and GLA protein levels. Additionally, endoglycosidase H digestion was performed on cell lysates to quantify each GLA protein form: immature 50 kDa endoplasmic reticulum form and mature 46 kDa lysosomal form. The latter was employed to calculate lysosomal GLA activity and its relationship with clinical outcomes was studied. Fabry participants exhibited more of the immature form of GLA protein (0.23 vs 0.66, p= 0.04). Female patients exhibited higher total GLA activity (19.0 vs 5.1 nmol/hr/mg), total GLA protein levels 0.13 vs 0.50 GLA/LC, p= 0.003), and 46 kDa mature lysosomal form levels than male patients (0.53 vs 0.10, p= 0.001). Additionally, females showed a significant correlation between the GLA mature form and GLA activity (r2= 0.59, p= 0.04). Consistently, lysosomal GLA activity exhibited significant associations with MSSI (r2= -0.66, p= 0.02) and GFR (r2= 0.59, p= 0.04) only in this sex group. These results suggest that total GLA protein levels are linked to the severity of FD manifestations, particularly in females via enzyme activity.

pathology↗