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Full-Text Articles in Medical Cell Biology

Attenuated Negative Feedback In Monocyte-Derived Macrophages From Persons Living With Hiv: A Role For Ikaros, Celeste Faia, Karlie Plaisance-Bonstaff, Cecilia Vittori, Dorota Wyczechowska, Adam Lassak, Mary Meyaski-Schluter, Krzysztof Reiss, Francesca Peruzzi Nov 2021

Attenuated Negative Feedback In Monocyte-Derived Macrophages From Persons Living With Hiv: A Role For Ikaros, Celeste Faia, Karlie Plaisance-Bonstaff, Cecilia Vittori, Dorota Wyczechowska, Adam Lassak, Mary Meyaski-Schluter, Krzysztof Reiss, Francesca Peruzzi

School of Medicine Faculty Publications

Persons living with HIV (PLWH) are at higher risk of developing secondary illnesses than their uninfected counterparts, suggestive of a dysfunctional immune system in these individuals. Upon exposure to pathogens, monocytes undergo epigenetic remodeling that results in either a trained or a tolerant phenotype, characterized by hyper-responsiveness or hypo-responsiveness to secondary stimuli, respectively. We utilized CD14+ monocytes from virally suppressed PLWH and healthy controls for in vitro analysis following polarization of these cells toward a pro-inflammatory monocyte-derived macrophage (MDM) phenotype. We found that in PLWH-derived MDMs, pro-inflammatory signals (TNFA, IL6, IL1B, miR-155-5p, and IDO1) dominate over negative feedback signals (NCOR2, …


Peroxisomal Multifunctional Protein 2 Deficiency Perturbs Lipid Homeostasis In The Retina And Causes Visual Dysfunction In Mice, Yannick Das, Daniëlle Swinkels, Sai Kocherlakota, Stefan Vinckier, Frédéric M. Vaz, Eric Wever, Antoine H.C. Van Kampen, Bokkyoo Jun, Khanh V. Do, Lieve Moons, Nicolas G. Bazan, Paul P. Van Veldhoven, Myriam Baes Feb 2021

Peroxisomal Multifunctional Protein 2 Deficiency Perturbs Lipid Homeostasis In The Retina And Causes Visual Dysfunction In Mice, Yannick Das, Daniëlle Swinkels, Sai Kocherlakota, Stefan Vinckier, Frédéric M. Vaz, Eric Wever, Antoine H.C. Van Kampen, Bokkyoo Jun, Khanh V. Do, Lieve Moons, Nicolas G. Bazan, Paul P. Van Veldhoven, Myriam Baes

School of Medicine Faculty Publications

Patients lacking multifunctional protein 2 (MFP2), the central enzyme of the peroxisomal β-oxidation pathway, develop retinopathy. This pathway is involved in the metabolism of very long chain (VLCFAs) and polyunsaturated (PUFAs) fatty acids, which are enriched in the photoreceptor outer segments (POS). The molecular mechanisms underlying the retinopathy remain, however, elusive. Here, we report that mice with MFP2 inactivation display decreased retinal function already at the age of 3 weeks, which is accompanied by a profound shortening of the photoreceptor outer and inner segments, but with preserved photoreceptor ultrastructure. Furthermore, MFP2 deficient retinas exhibit severe changes in gene expression with …