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Wong, M. A.

Publications and source records attributed to Wong, M. A..

2 recordsLinked to original sources

The microprotein Dafcin resembles influenza HA fusion peptide and regulates the size of storage lysosomes in the germline

Microproteins translated from short open reading frames are increasingly understood to play important roles in cell biology and development. Here, we describe a microprotein in Drosophila that is expressed in ovarian follicle cells which surround the developing oocyte. The Dafcin microprotein is predicted to form an amphipathic alpha-helix, a structure known to interact with lipid bilayers. Dafcins structure most resembles the influenza HA fusion peptide, which induces negative curvature of endosomal membranes. Dafcin tagged with GFP localizes to the Golgi and is ultimately secreted from the follicle cells. Remarkably, this occurs without the microprotein having a secretory signal sequence. The protein is taken up into the oocyte by endocytosis, localizing to the inner face of storage lysosomes called yolk granules. Mutant analysis shows that Dafcin is required to limit the size of yolk granules. This may occur by inducing negative membrane curvature like HA peptide. In support, liposomes formed in vitro with both Dafcin and HA peptides are smaller in size.

cell biology↗

Coordinated inhibition of SOX9 and cell cycle progression by microRNA-200 restricts sebaceous gland fate specification

The microRNA-200 family (miR-200s) is widely recognized for their potent role in inhibiting epithelial-to-mesenchymal transition and cell cycle progression in cancer. However, their functional specificity in normal epithelial development remains poorly understood. Here we show that miR-200s are highly enriched in hair matrix progenitors but conspicuously absent from the upper hair follicle (HF), the anatomical location where sebaceous gland (SG) and HF stem cells are specified. We demonstrate that elevated miR-200 expression in this region abolishes SG fate specification while permitting hair morphogenesis. Genome-wide identification of miR-200 targets reveals that miR-200s regulate multiple negative regulators of WNT signaling, in addition to cell cycle regulators. Single-cell and spatial transcriptomic analyses uncover a mutually exclusive expression patterns between WNT activity and SOX9 in the upper HF, which is disrupted by miR-200 induction, resulting in compromised SOX9 function. Mechanistically, genome-wide identification of SOX9 targets uncovers a broad network of lipid and fatty acid metabolism genes critical for the transition of upper HF progenitors to the SG fate. The coordinated inhibition of the SOX9-dependent lipogenic program and the potent restriction of cell cycle progression, both mediated by miR-200s, collectively blocks SG specification. Taken together, this work reveals an unexpected specificity of miR-200 in restricting epithelial plasticity and elucidates a spatially defined SOX9 regulatory network essential for SG development.

developmental biology↗