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Motyan, J. A.

Publications and source records attributed to Motyan, J. A..

2 recordsLinked to original sources

Iron uptake mediated by TFRC and secretion of transferrin types stimulate thermogenic activation in human adipocytes

Adrenergic-driven thermogenic activation of brown adipose tissue requires high amounts of nutrients including iron supporting mitochondrial biogenesis. This was governed by rapid gene expression changes in human cervical-derived brown adipocytes. Transferrin receptor 1 (TFRC) was strongly upregulated in response to dibutyryl-cAMP. Pharmacological inhibition and siRNA-mediated knockdown of TFRC during adrenergic stimulation decreased intracellular iron content and prevented elevation of oxygen consumption and induction of thermogenic markers. Deferoxamine-mediated iron chelation also showed comparable effects. Contrarily, the expression of ferroportin iron exporter was suppressed during activation, however, its pharmacological inhibition did not further increase thermogenesis. Brown adipocytes constitutively expressed and secreted high amounts of transferrin while the released melanotransferrin at activated condition was predicted to further augment iron influx stimulating heat production.

cell biology↗

BCOR-Rearranged Sarcomas: In Silico Insights into Altered Domains and Reduced RAWUL-PUFD Binding

BCOR (BCL-6 corepressor)-rearranged small round cell sarcoma (BRS) is a rare soft tissue tumor, mostly featuring the BCOR::CCNB3 fusion, with other fusions like BCOR::MAML3, BCOR::CLGN, ZC3H7B::BCOR, KMT2D::BCOR, CIITA::BCOR, and RTL9-BCOR also reported. BCOR, a Polycomb Repressive Complex 1 (PRC1) component, influences histone modifications. It dimerizes with Polycomb group RING finger homolog (PCGF1) via its PCGF ubiquitin-like fold discriminator (PUFD) domain interacting with PCGF1s RING finger and WD40-associated ubiquitin-like (RAWUL) domain. We used various in silico tools to explore the impact of fusion events on BCORs functionality and RAWUL-PUFD dimer binding affinity. Changes were found in the domain landscapes, physicochemical properties, GO terms and significant increases in the disordered regions within the PUFD domain of the fusion proteins. Structural predictions indicated modified intermolecular contacts (ICs) and a significant reduction in binding affinity in fusion protein RAWUL-PUFD dimers. These findings align with expression data showing PRC1-regulated gene upregulation in BRS, likely due to reduced RAWUL-PUFD binding affinity, impacting dimer formation and PRC1 assembly. Our findings enhance the understanding of BRS oncogenesis and identify potential therapeutic targets.

molecular biology↗