IFOM-inStem Joint Research Laboratory, Centre for Inflammation and Tissue Homeostasis, Institute for Stem Cell Science and Regenerative Medicine, Bangalore, India.
School of Chemical and Biotechnology (SCBT), Shanmugha Arts, Science, Technology and Research Academy (SASTRA), Deemed to be University, Thanjavur, India.
J Cell Biol. 2024 Jul 1;223(7). doi: 10.1083/jcb.202306028. Epub 2024 Apr 8.
The wound-healing process is a paradigm of the directed migration of various pools of stem cells from their niche to the site of injury where they replenish damaged cells. Two decades have elapsed since the observation that wounding activates multipotent hair follicle stem cells to infiltrate the epidermis, but the cues that coax these cells out of their niche remain unknown. Here, we report that Caspase-1, a protein classically known as an integral component of the cytosolic inflammasome, is secreted upon wounding and has a non-canonical role in the extracellular milieu. Through its caspase activation recruitment domain (CARD), Caspase-1 is sufficient to initiate the migration of hair follicle stem cells into the epidermis. Uncovering this novel function of Caspase-1 also facilitates a deeper understanding of the mechanistic basis of the epithelial hyperplasia found to accompany numerous inflammatory skin diseases.
创伤愈合过程是各种干细胞从其龛位定向迁移到损伤部位的范例,在那里它们可以补充受损细胞。自从观察到创伤激活多能毛囊干细胞浸润表皮以来,已经过去了二十年,但诱导这些细胞离开其龛位的线索仍然未知。在这里,我们报告 Caspase-1,一种经典上被认为是细胞质内含物体的组成部分的蛋白质,在创伤后被分泌,并在细胞外环境中具有非经典作用。通过其半胱天冬酶激活募集结构域 (CARD),Caspase-1 足以启动毛囊干细胞向表皮的迁移。揭示 Caspase-1 的这一新功能也有助于更深入地了解伴随许多炎症性皮肤病的上皮过度增生的机制基础。