Kisspeptin/KISS1R Signaling Modulates Human Airway Smooth Muscle Cell Migration.
Premanand BalrajNilesh Sudhakar AmbhoreYogaraj S RamakrishnanNiyati A BorkarPriyanka BanerjeeMohammad Irshad RezaSubashini VaradharajanAshish KumarChristina M PabelickY S PrakashVenkatachalem SathishPublished in: American journal of respiratory cell and molecular biology (2024)
Airway remodeling is a cardinal feature of asthma, associated with increased airway smooth muscle (ASM) cell mass and upregulation of extracellular matrix deposition. Exaggerated ASM cell migration contributes to excessive ASM mass. Previously, we demonstrated the alleviating role of Kp (kisspeptin) receptor (KISS1R) activation by Kp-10 in mitogen (PDGF [platelet-derived growth factor])-induced human ASM cell proliferation in vitro and airway remodeling in vivo in a mouse model of asthma. Here, we examined the mechanisms by which KISS1R activation regulates mitogen-induced ASM cell migration. KISS1R activation using Kp-10 significantly inhibited PDGF-induced ASM cell migration, further confirmed using KISS1R shRNA. Furthermore, KISS1R activation modulated F/G actin dynamics and the expression of promigration proteins like CDC42 (cell division control protein 42) and cofilin. Mechanistically, we observed reduced ASM RhoA-GTPAse with KISS1R activation. The antimigratory effect of KISS1R was abolished by PKA (protein kinase A)-inhibitory peptide. Conversely, KISS1R activation significantly increased cAMP and phosphorylation of CREB (cAMP-response element binding protein) in PDGF-exposed ASM cells. Overall, these results highlight the alleviating properties of Kp-10 in the context of airway remodeling.
Keyphrases
- cell migration
- smooth muscle
- protein kinase
- binding protein
- growth factor
- cell proliferation
- endothelial cells
- high glucose
- extracellular matrix
- mouse model
- diabetic rats
- chronic obstructive pulmonary disease
- poor prognosis
- oxidative stress
- immune response
- physical activity
- cell therapy
- drug induced
- stem cells
- long non coding rna
- lung function
- signaling pathway
- vascular smooth muscle cells
- small molecule
- amino acid
- pluripotent stem cells