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Santhoshkumar, R.

Publications and source records attributed to Santhoshkumar, R..

2 recordsLinked to original sources

LRRK2 I1371V Impairs Astrocytic Glucose Metabolism and Triggers Multi-Organellar Dysfunction in PD

While LRRK2 mutations modulate systemic glucose homeostasis and metabolic dysfunction precedes Parkinsons disease (PD) motor-symptoms, the impact of pathogenic LRRK2-mutations on astrocytic glucose-uptake and organellar function remains unexplored. Here, we demonstrate that LRRK2-I1371V mutation causes profound metabolic and organellar dysfunction in LRRK2-I1371V PD-iPSC-derived astrocytes and U87 cells overexpressing I1371V variant. LRRK2-I1371V astrocytes exhibit significantly reduced GLUT1 expression and plasma membrane localization, resulting in impaired glucose-uptake and decreased lactate-production. This metabolic insufficiency correlates with cascading mitochondrial dysfunction, characterized by membrane depolarization, elevated reactive-oxygen-species, enhanced ubiquitination and reduced proteasomal-activity. Reduced LAMP1/LAMP2 expression, impaired lysosomal-acidification, and selective cathepsin D deficiency were observed. Accumulation of undegraded cargo was confirmed by transmission-electron-microscopy upon -synuclein exposure. ER stress was evident through upregulated GADD34/CHOP, increased phospho-PERK, and reduced nascent protein synthesis. Our results reveal that LRRK2-I1371V induces glucose-uptake deficits, causing energy depletion and multi-organellar dysfunction, identifying astrocytic metabolic restoration as a promising therapeutic target for I1371V-associated PD.

neuroscience↗

Radiation resistance in cervical cancer: An insight on mitochondrial associated membranes and its related proteins.

Radiation therapy proves ineffective against radiation-resistant cancers, exacerbating the disease. The Mitochondrial Associated Membrane (MAM) forms through the tethering of the endoplasmic reticulum to the mitochondrial membrane. Under stress conditions such as radiation, mitochondrial function becomes impaired, prompting the recruitment of endoplasmic reticulum proteins for cell survival. Therefore, understanding the role of ER and mitochondria interactions is crucial for the development of inhibitors or drugs to sensitize cancer cells to radiation. In this study, we focused on ultrastructural alterations in radiation-resistant cells. The main structural changes observed included mitochondrial elongation, mitophagy, the presence of lipid droplets, and shortened ER segments. While MAM formation (the interaction between the ER and mitochondria) was observed in SiHa cells not exposed to radiation, it was disrupted in radiation-resistant cells. We analysed genes associated with mitochondrial elongation, mitophagy, lipid droplet formation, short ER fragments, and ER stress using a dataset from cervical cancer patients in The Cancer Genome Atlas (TCGA). Our analyses suggest that BNIP3L is implicated in therapy failure and tumour recurrence. In future, inhibiting BNIP3L could potentially sensitize resistant cells to radiation therapy.

cancer biology↗