| Literature DB >> 32973917 |
Ellen Mitchell1, Charlotte E L Mellor1, Talveen S Purba1.
Abstract
BACKGROUND: XMU-MP-1 is an inhibitor of the Hippo pathway kinases MST1/2 and has been shown to promote the downstream activation of the pro-proliferative, pro-regenerative and anti-apoptotic transcriptional regulator YAP1. We tested whether XMU-MP-1 can activate YAP1 in a model human mini-organ, namely the hair follicle, to determine whether it can be pharmacologically exploited to promote regeneration in the hair follicle as a novel strategy to treat pathological hair loss disorders.Entities:
Keywords: Alopecia; Aurora B; Cell cycle; Chemotherapy; Hair follicle; Hippo; MST1/2; Proliferation; XMU-MP-1; YAP1
Year: 2020 PMID: 32973917 PMCID: PMC7495873 DOI: 10.1186/s13008-020-00067-0
Source DB: PubMed Journal: Cell Div ISSN: 1747-1028 Impact factor: 5.130
Fig. 1XMU-MP-1 perturbs cell cycle progression in proliferating human hair matrix keratinocytes. a Treatment of human hair follicles with 3 µM XMU-MP-1 for 24 h significantly decreases the number of Ki-67 + cells in the hair matrix, whilst simultaneously increasing Ki-67 protein expression (p = 0.0002 for both analyses). Mann–Whitney test performed on 7–9 hair follicles from 3 donors. b XMU-MP-1 significantly (p =0.0107) decreases the number EdU + cells (S-phase). Unpaired t-test performed on 10 hair follicles per group from 3 donors. c XMU-MP-1 significantly (p ≤ 0.0001) decreases the number of mitotic phospho histone H3 (pH3) + cells. Mann–Whitney test performed on 7–9 hair follicles from 3 donors. d Immunofluorescence images show that XMU-MP-1 perturbs markers of cell cycle progression in the human hair matrix. 50 µm scale. e XMU-MP-1 does not affect the immunoreactivity of active YAP1 in the proliferative hair matrix but significantly (p =0.028) decreases active YAP1 immunoreactivity in the hair follicle pre-cortex. Mann–Whitney test performed on 7-8 hair follicles from 3 donors. f XMU-MP-1 significantly (p ≤ 0.0001) decreases phospho-MOB1 (Thr35) immunoreactivity in the hair follicle matrix and pre-cortex. Unpaired t-test performed on 9–10 hair follicles from 3 donors. g Immunofluorescence images show that XMU-MP-1 selectively decreases active YAP1 immunoreactivity in the hair follicle pre-cortex and decreases phospho-MOB1 (Thr35) immunoreactivity in the hair follicle matrix and pre-cortex. Error bars represent standard error. FI Fluorescence intensity, HM Hair Matrix
Fig. 2XMU-MP-1 antagonises cell cycle-dependent paclitaxel cytotoxicity. a, b XMU-MP-1 blocks the accumulation of phospho histone H3 (pH3)+ and cleaved caspase 3+ (CC3) cells in the hair matrix seen following paclitaxel treatment [2]. 50 µm scale. Analysis conducted using 4-7 hair follicles per condition from 2 donors. c Paclitaxel blocks nascent RNA synthesis, as visualised by 5-ethynyl uridine (EU) incorporation, in abnormally dividing hair matrix keratinocytes (white arrows) [2, 14]. This paclitaxel-induced block in RNA synthesis is prevented by XMU-MP-1 treatment. d, e Treatment with the Aurora B inhibitor AZD1152 also blocks the accumulation of pH3 + cells in the hair matrix following paclitaxel treatment, but results only in a trending reduction in the number of cleaved caspase 3 + cells, possibly due to the independent cytotoxicity of AZD1152 [16]. Analysis conducted using 4–5 hair follicles per condition from 1 donor. Adjusted p values = 0.0006 [***] and < 0.0001 [****]. Ordinary one-way ANOVA with multiple comparisons performed