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Huysseune, S.

Publications and source records attributed to Huysseune, S..

2 recordsLinked to original sources

Loss of Elp3 impairs the maturation tempo of brain ependymal cells

Conditional deletion of Elp3 in the mouse forebrain leads to microcephaly at birth. In this study, we demonstrate that these mice also develop postnatal hydrocephalus, associated with an enlargement of the brain ventricles. In wild-type mice, ependymal motile cilia are properly aligned to facilitate the circulation of cerebrospinal fluid (CSF) within the ventricles. Our findings reveal that Elp3 loss induces endoplasmic reticulum (ER) stress and upregulation of ATF4 expression in ependymal cell progenitors, which compromises Notch signaling and accelerates their maturation. This is accompanied by a disruption in the establishment of rotational and translational polarities of the motile cilia of maturing ependymal cells, resulting in disorganized cilia bundles. Collectively, these molecular abnormalities lead to the premature and abnormal development of ependymal cells, culminating in cilia beating dysfunction, impaired CSF clearance, and the development of hydrocephalus.

neuroscience↗

THE OLFACTORY RECEPTOR Olfr78 REGULATES DIFFERENTIATION OF ENTEROCHROMAFFIN CELLS IN THE MOUSE COLON

The gastrointestinal epithelium constitutes a chemosensory system for microbiota-derived metabolites such as Short Chain Fatty Acids (SCFA). In this study, we investigated spatial distribution of Olfr78, one of the SCFA receptors, in the mouse intestine and studied the transcriptome of colon enteroendocrine cells expressing Olfr78. The receptor is principally detected in the enterochromaffin and L subtypes in the proximal and distal colon, respectively. Using the Olfr78-GFP and VilCre/Olfr78flox transgenic mouse lines, we reveal that loss of epithelial Olfr78 results in impaired enterochromaffin cell differentiation, blocking cells in an undefined secretory lineage state. This is accompanied by dysbiosis, characterized by an increased Firmicutes/Bacteroidetes ratio, as well as a less efficient antioxidant system in colon crypts. Using organoid cultures, we further show that maintenance of enterochromaffin cells involves activation of the Olfr78 receptor via the SCFA ligand acetate. Altogether, this work provides evidence that Olfr78 contributes to colon homeostasis by regulating enterochromaffin cell differentiation.

cell biology↗