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Dayalan Naidu, S.

Publications and source records attributed to Dayalan Naidu, S..

2 recordsLinked to original sources

Deregulation of multiple mechanisms shapes the onset of LAMA2-congenital muscular dystrophy

LAMA2-congenital muscular dystrophy (LAMA2-CMD) is the most common congenital muscular dystrophy. This often-lethal disease is triggered by mutations in LAMA2, coding for laminin-2 chain, a key extracellular matrix (ECM) component, prevalent in the skeletal muscle. Several phenotypes have been associated with LAMA2-CMD, however, it is not yet known what mechanisms are faulty, right at disease onset in utero. Using the dyW mouse model of LAMA2-CMD we showed that the disease onset is characterized by a profound downregulation of gene expression, with a marked effect on cytoskeletal organization, myoblast differentiation and fusion and altered DNA repair and oxidative stress responses. Concordantly, we found that Lama2-deficient myoblast cells displayed proliferation and differentiation defects, increased oxidative stress and DNA damage. Together, our findings provide unique insights into the processes dependent on laminin-2 chain during muscle development, revealing its critical importance to maintain muscle cell homeostasis already at fetal stages.

developmental biology↗

Nrf2 is a central regulator of the metabolic landscape in macrophages and finetunes their inflammatory response

To overcome oxidative, inflammatory, and metabolic stress, cells have evolved networks of cytoprotective proteins controlled by nuclear factor erythroid 2 p45-related factor 2 (Nrf2) and its main negative regulator the Kelch-like ECH associated protein 1 (Keap1). Here, we used high-resolution mass-spectrometry to characterize the proteomes of macrophages with genetically altered Nrf2 status. Our analysis revealed significant differences among the genotypes in cellular metabolism and redox homeostasis, which we validated with respirometry and metabolomics, as well as in anti-viral immune pathways and the cell cycle. Nrf2 status significantly affected the proteome following lipopolysaccharide (LPS) stimulation, with alterations in redox, carbohydrate and lipid metabolism, and innate immunity observed. Of note, Nrf2 activation was found to promote mitochondrial fusion in inflammatory macrophages. The Keap1 inhibitor, 4-octyl itaconate (4-OI), a derivative of the mitochondrial immunometabolite itaconate, remodeled the inflammatory macrophage proteome, increasing redox and suppressing anti-viral immune effectors in a Nrf2-dependent manner. These data suggest that Nrf2 activation facilitates metabolic reprogramming and mitochondrial adaptation, and finetunes the innate immune response in macrophages. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=121 SRC="FIGDIR/small/456204v1_ufig1.gif" ALT="Figure 1"> View larger version (39K): org.highwire.dtl.DTLVardef@1f5bbb8org.highwire.dtl.DTLVardef@1f7311dorg.highwire.dtl.DTLVardef@1b9722forg.highwire.dtl.DTLVardef@1f777d4_HPS_FORMAT_FIGEXP M_FIG C_FIG HighlightsO_LIFirst high-resolution proteome of macrophages with genetically altered Nrf2 status C_LIO_LINrf2 is key regulator of macrophage redox and intermediary metabolism C_LIO_LINrf2 finetunes the inflammatory response suppressing anti-viral immune and cytokine effectors, whilst promoting T cell activation factors C_LIO_LINrf2 regulates mitochondrial adaptation in inflammatory macrophages promoting the formation of a fused network C_LIO_LI4-octyl itaconate (4-OI) suppresses anti-viral immune effectors in inflammatory macrophages in a Nrf2-dependent manner C_LI

immunology↗