Flower dependent trafficking of lamellar bodies facilitates maturation of the epidermal barrier.

Rudd, Justin C; Smits, Jos P H; Kuwong, Patrick T; Johnson, Rachel E; Monga, Louise M N; van Vlijmen-Willems, Ivonne M J J; Porter, Greer L; Halloran, Peter O et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Specialized secretory cells, including keratinocytes in the last viable layers of mammalian epidermis, utilize lysosome-related organelles (LROs) to exocytose distinct cargoes vital for tissue function. Here, we demonstrate that the Flower isoform, hFWE4, a putative Ca<sup>2+</sup> channel that permits endocytic retrieval of presynaptic vesicles and lytic granules, also resides on epidermal lamellar bodies (LBs), an LRO that extrudes a proteinaceous lipid-rich matrix to finalize the epidermal barrier. In differentiated keratinocyte cultures, we show that hFWE4-positive LB-like vesicles associate with a distinct ensemble of LRO trafficking mediators and demonstrate that hFWE4 liberates Ca<sup>2+</sup> from intracellular stores to enable the surface presentation of cargo contained within these vesicles. Finally, supporting a critical role for hFWE4-dependent trafficking in establishing the epidermal barrier, we demonstrate that this process is dysregulated in genetic diseases of cornification that are driven by impairments in keratinocyte Ca<sup>2+</sup> handling. Our results provide new insight into the biogenesis and trafficking of epidermal LBs and more broadly suggest that hFWE4 may serve as a core component of LRO trafficking machinery that endows Ca<sup>2+</sup> dependency to distinct stages of the transport process depending on the cell of origin.

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