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Chinchole, A.

Publications and source records attributed to Chinchole, A..

2 recordsLinked to original sources

Insulin-Regulated Actin Dynamics is Disrupted in a Human Keratinocyte Model of Hailey Hailey Disease

Hailey Hailey Disease (HHD) is an autosomal dominant cutaneous disorder caused by mutations in ATP2C1, the gene encoding the Golgi/secretory pathway Ca2+-ATPase SPCA1. Characterized by suprabasal acantholysis and intertriginous blistering of the skin, HHD treatment focuses on managing symptoms as there is no cure. Challenges to targeted therapy are due to the lack of facile and reliable models, both human and rodent, for mechanistic studies. Here we validate and characterize CRISPR/Cas9 mediated single and bi-allelic ATP2C1 knockouts in immortalized human hTERT keratinocytes. Whereas SPCA1 expression, Golgi morphology and Golgi Ca2+ accumulation were proportionately affected in heterozygous and homozygous ATP2C1 null mutants as expected, both single and double allelic mutants showed near complete loss of cadherins associated with desmosomal and adherens junctions. HHD is characterized by poor wound healing and impaired keratinocyte migration. We show that SPCA1 is required for dynamic reorganization of actin cytoskeleton in keratinocyte spreading. We identified an insulin activated PI3K-AKT-Rac1 signaling pathway required for lamellipodia formation and keratinocyte spreading, defective in SPCA1 mutants. Transgenic expression of hSPCA1 or treatment with CDN1163, a small molecule Ca2+-ATPase agonist, restored defective phenotypes in the HHD model, paving the way for future therapeutic approaches to treat this disorder.

cell biology↗

MLL/WDR5 complex recruits KIF2C to midbody to ensure MT depolymerization and furrow compaction during cytokinesis

Mixed-lineage leukemia (MLL) protein is a well characterized epigenetic regulator whose non-canonical activities remain under appreciated. Here we show that MLL and its associated protein WDR5, localize to the midbody. Loss of MLL/WDR5 results in defective midbody formation, which displays a wide midzone-like microtubule structure, along with chromosome bridges, resulting in binucleated cells. We show that MLL and WDR5 interact with kinesin 13 motor--KIF2C, and targets it to the midbody. The depolymerase activity of KIF2C promotes correct localization of centralspindlin complex, compaction of midzone MTs and finally furrow completion. By characterizing the previously undiscovered role of MLL and KIF2C in the regulation of cytokinesis, our work underscores the importance of these proteins at the interface of actin and microtubule cytoskeleton regulation, pathways that are frequently altered in oncogenesis.

cell biology↗