Related Experiment Video
Updated: Sep 18, 2026

Yeast Luminometric and Xenopus Oocyte Electrophysiological Examinations of the Molecular Mechanosensitivity of TRPV4
Published on: December 31, 2013
TRPV4 mediates low-humidity responses in epidermal keratinocytes
Manami Tanaka1, Shunsuke Chikuma2, Mariko Hara-Chikuma1
1Department of Pharmacology, School of Medicine, Keio University, Tokyo 160-8582, Japan.
Abstract:
Environmental humidity is a key determinant of organismal physiology and homeostasis. Although the genetic basis of humidity-driven responses is well established in invertebrates, the molecular and genetic mechanisms by which mammals respond to low humidity remain unclear. Here, using reconstructed 3D epidermal equivalents and a mouse model, we identify transient receptor potential vanilloid 4 (TRPV4) as an important mediator of low-humidity-induced signaling and transcriptional responses in epidermal keratinocytes. In 3D skin models, low-humidity exposure induced rapid water movement, characterized by enhanced apical water loss and concomitant basal-side water uptake within 90 s, followed by TRPV4-dependent Ca2+ influx within 3 min. Pharmacological TRPV4 inhibition suppressed MAPK activation at 30 min and both early (3 h) and late (24 h) low-humidity-induced transcriptional changes. Ca2+ chelation reduced low-humidity-induced ERK and p38 activation, and ERK inhibition attenuated low-humidity-induced gene expression changes at 3 h. In vivo, acute low-humidity exposure in mice elicited epidermal MAPK activation within 15 min and early transcriptional changes at 3 h, with RNA-sequencing analysis showing enrichment of gene sets associated with cell adhesion or inflammatory responses. These signaling and transcriptomic responses were attenuated in the epidermis of keratinocyte-specific Trpv4 conditional knockout mice. Collectively, our findings identify TRPV4 as an important mediator of epidermalresponses to low-humidity stress, providing a molecular basis for low-humidity-driven signaling in the mammalian epidermis.
Related Concept Videos
Thermosensation
Regulation of Transpiration by Stomata
Cells of the Epidermis
The cells in all these layers except the stratum basale are called keratinocytes, a type of cell that manufactures and stores the protein keratin. The keratinocytes in the stratum corneum are dead and regularly slough away, being replaced by cells from...
Responses to Heat and Cold Stress
Renewal of Skin Epidermal Stem Cells
Adaptations that Reduce Water Loss

