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Arbi, M.

Publications and source records attributed to Arbi, M..

2 recordsLinked to original sources

Glucagon-like peptide-1 receptor in the human hypothalamus is associated with body mass index and colocalizes with the anorexigenic neuropeptide nucleobindin-2/nesfatin-1.

IntroductionGlucagon-like peptide-1 (GLP-1) anorexigenic and anti-obesogenic effects are centrally mediated. Data on animals emphasize the importance of neuronal GLP-1 receptor (GLP-1R) for feeding suppression, although it is unclear whether astrocytes participate in the transduction of anorectic GLP-1R-dependent signals. In humans, the brain circuitry underlying these effects remains insufficiently investigated. GLP-1R neuroanatomic localization in human hypothalamus, a brain region with a pivotal role in energy homeostasis regulation, is essential in order to improve our understanding of GLP-1 signaling pathways and central metabolic functions. The present study aimed to explore GLP-1R protein expression in human hypothalamus and its correlation with body mass index (BMI). MethodsSections of hypothalamus from 28 autopsy cases, 11 with normal weight (BMI < 25 Kg/m2) and 17 with non-normal weight (BMI [&ge;] 25 Kg/m2), were examined using immunohistochemistry and double immunofluorescence labeling. ResultsProminent GLP-1R immunoexpression was detected in neurons of several hypothalamic nuclei, including paraventricular, supraoptic, and infundibular nuclei, lateral hypothalamic area (LH), and basal forebrain nuclei. Interestingly, in LH, GLP-1R protein expression was significantly decreased in individuals with BMI [&ge;] 25 Kg/m2, compared with normal weight counterparts (p=0.03). Furthermore, GLP-1R was moderately and negatively correlated ({tau}b=-0.347, p=0.024) with BMI levels only in the LH. GLP-1R extensively colocalized with the anorexigenic and anti-obesogenic neuropeptide nucleobindin-2/nesfatin-1, but not with the astrocytic marker glial fibrillary acidic protein (GFAP). ConclusionThese data suggest a potential role for GLP-1R in the regulation of energy balance in human hypothalamus, possibly through interactions with nesfatin-1. In LH, an appetite- and reward-related brain region, reduced GLP-1R immunoexpression may contribute to dysregulation of homeostatic and/or hedonic feeding behavior. GLP-1R colocalization with nesfatin-1 in the basal forebrain, a cognition-related brain area, might give impetus towards elucidating additional central actions of GLP-1R.

neuroscience↗

McIdas localizes at centrioles and controls centriole numbers through PLK4-dependent phosphorylation

The centriole duplication cycle must be tightly controlled and coordinated with the chromosome cycle. Aberrations in centriole biogenesis can lead to cancer, developmental disorders and ciliopathies. Here, we show that McIdas -previously implicated in cell cycle control and centriole amplification in multiciliated cells-is critical to maintain centriole numbers. Using expansion microscopy, we demonstrate that McIdas is present at the middle part of centrioles, where it exhibits a differential localization during the cell cycle. McIdas loss perturbs daughter centriole biogenesis and centrosomal SAS6 recruitment, whereas its overexpression induces centriole overduplication. Consistently, McIdas depletion reduces PLK4-induced centriole amplification. McIdas interacts with and is phosphorylated by PLK4 in multiple sites identified by mass spectrometry. Mutational analysis shows that McIdas phosphorylation is important for centriole number control. Overall, our results identify a novel, direct role of McIdas on centriole duplication that can link its previously characterized roles in the chromosome cycle and multiciliogenesis.

molecular biology↗