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Biology subjects

Lao, M.

Publications and source records attributed to Lao, M..

3 recordsLinked to original sources

Sox9 prevents retinal degeneration and is required for limbal stem cell differentiation in the adult mouse eye

Sox9 is a transcription factor with multiple roles during development and in adult organ homeostasis. In the adult eye, Sox9 expression persists in several cell types, including the retinal pigmented epithelium cells and the Muller glial cells, as well as in the limbal and corneal basal epithelia. To uncover the role of Sox9 in these cell types, we induced the deletion of the gene in adult mice. We found that, after Sox9 ablation, mutant mice undergo a severe process of retinal degeneration characterized by the loss of Muller glial cells and complete depletion of the photoreceptors layer. Moreover, by combining single-cell RNA sequencing and Sox9 lineage tracing, we found that Sox9 is expressed in a basal limbal stem cell population with the ability to form two types of long-lived cell clones involved in stem cell maintenance and homeostasis. Mosaic analysis of Sox9 positive and negative cells confirmed that the gene is essential for limbal stem cell differentiation. Our results show that Sox9 is required for the maintenance of retinal integrity and for limbal stem cell differentiation in the adult mouse eye.

developmental biology↗

Complete male-to-female sex reversal in XY mice lacking the miR-17~92 cluster

In mammals, sex determination is controlled by antagonistic gene cascades operating in embryonic undifferentiated gonads1 2. The expression of the Y-linked gene SRY is sufficient to trigger the testicular pathway, whereas its absence in XX embryos leads to ovarian differentiation3 4 5. Despite this strong genetic component, the involvement of non-coding regulation in determining mammalian sex remains unclear6. Here we show that the deletion of a single microRNA cluster, miR-17[~]92, induces complete primary male-to-female sex reversal in XY mice. Time-course analyses revealed that Sry is heterochronically expressed, showing a delay in XY miR-17[~]92 knockout gonads, which subsequently activate the ovarian genetic program. Bulk and single cell RNA-seq analyses showed that Sertoli cell differentiation is reduced, delayed and unable to sustain the testicular fate. This disrupted differentiation results from a transient state of sex ambiguity in pre-supporting cells, which is later resolved towards the ovarian fate. Consistent with known mechanisms of miRNA-mediated gene regulation, the expression of miR-17[~]92 target genes is not stabilized in undifferentiated XY mutant gonads, affecting concomitantly the fine regulation of gene networks with critical roles in developing gonads. Our results demonstrate that microRNAs are key components for mammalian sex determination, controlling the timing of Sry expression and Sertoli cell differentiation.

developmental biology↗

Identification of circRNAs linked to Alzheimer's disease and related dementias

We conducted a circular-transcriptome-wide analysis and examined circRNA expression patterns associated with AD and clinical and neuropathological AD severity measures in human hippocampus and cortex brain regions. We validated prior studies of circRNA in AD cortex, and demonstrate novel patterns of expression in the AD hippocampus. We also examined circRNA expression across multiple types of dementia and show that circRNA expression differs by dementia subtype. We demonstrate robust circRNA expression in human neuronal precursor cells (NPCs). Then, using NPCs to study qPCR validated circRNA, we show that exposure to oligomeric tau elicits downregulation of circRNA similar to that observed in AD brain. These data identify circRNA that are changed with AD, and suggest that treating neuronal cells with oligomeric tau can recapitulate some of these changes.

molecular biology↗