Upregulation of microRNA-7 contributes to inhibition of the growth and metastasis of osteosarcoma cells through the inhibition of IGF1R
JOURNAL OF CELLULAR PHYSIOLOGY
Authors: Zhang, Zuojun; Zhao, Ming; Wang, Guojie
Abstract
We aim to uncover the methylation of microRNA-7 (miR-7) promoter in osteosarcoma (OS) and the inner mechanism of miR-7 on the progression of OS cells. Expression and methylation state of miR-7 in OS tissues and cells were detected. With the aim to unearth the ability of miR-7 in OS, the proliferation, cell cycle progression, apoptosis, invasion, migration of OS cells, and the tumor growth in nude mice were determined. Meanwhile, IGF1R expression was detected and the association between miR-7 and IGF1R was confirmed. The proliferating cell nuclear antigen (PCNA) expression was tested by immunohistochemical staining, and the lung metastasis was observed by H&E staining. miR-7 expression was decreased and methylation state of miR-7 was increased in OS tissues and cells. Upregulated miR-7 inhibited proliferation, cell cycle progression, invasion,and migration, while inducing apoptosis of OS cells and the tumor growth as well as PCNA expression in nude mice. Expression of IGF1R was downregulated in OS cells with overexpression of miR-7. Experiments verified the binding site between miR-7 and IGF1R. Our study demonstrates that abnormal methylation of miR-7 contributes to decreased miR-7 in OS. In addition, miR-7 represses the initiation and progression of OS cells through the inhibition of IGF1R.
Aberrant IGF1-PI3K/AKT/MTOR signaling pathway regulates the local immunity of oral lichen planus
IMMUNOBIOLOGY
Authors: Ma, Rui-Jie; Tan, Ya-Qin; Zhou, Gang
Abstract
Objectives: Oral lichen planus (OLP) is a T cell-mediated immune-related chronic disease, featured by accumulation of T cells and apoptosis of keratinocytes. Insulin-like growth factors 1 (IGF1) signaling, in combination with its downstream PI3K/AKT/MTOR cascade, plays pivotal roles in the regulation of inflammation and immune response. Meanwhile, TRB3 acts as a connective protein in the pathway. This study investigated the possible function of IGF1-PI3K/AKT/MTOR pathway in the local immunity of OLP. Methods: The expression of phosphorylated IGF1R (p-IGF1R) and TRB3 in lesional tissues of OLP was measured. The effects of T cells pretreated with PI3K inhibitor LY294002, MTOR antagonist rapamycin and exogenous IGF1 on the cell proliferation and apoptosis, as well as supernatant inflammatory cytokine levels were detected in co-culture system of activated T cells and oral keratinocytes, respectively. Results: The expression of p-IGF1R and TRB3 in OLP lesions was significantly increased when compared with controls (P < 0.001). Rapamycin-treated T cells displayed enhanced apoptosis rate and promoted proliferation of their keratinocytes in the co-culture system. Notably, abnormal expression of IFN-gamma and IL-4 were detected in supernatant of T cell alone and co-culture system in response to pharmacological modulators of IGF1-PI3K/MTOR pathway. Conclusions: The aberrant IGF1-PI3K/AKT/MTOR signaling may participate in the immunoregulatory mechanism of OLP, via regulation on the crosstalk between T cells and keratinocytes, as well as imbalanced cytokine networks.